{"publications":[{"id":29,"type_key":"C19","title":"As-Continuous-As-Possible Multi-Material Extrusion with Gradient Composition and Transition","authors":"Yefan Zhi, Teng Teng, Masoud Akbarzadeh","venue":"ACADIA","venue_full":"ACADIA - Association for Computer Aided Design in Architecture Annual Conference","year":2026,"venue_note":null,"address":"Detroit, Michigan, USA","note":null,"highlight_note":null,"links":[{"Author's Ver":"https://github.com/yefan-zhi/yefan-zhi-publications/blob/main/029%20As-Continuous-As-Possible%20Multi-Material%20Extrusion%20with%20Gradient%20Composition%20and%20Transition%20(Author's%20Version).pdf"}],"featured":"Representative Works","topic":"Multi-Material Extrusion","type":"Conference Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@InProceedings{Zhi-2026-Multi-Material-3DP,\n  author    = {Yefan Zhi and Teng Teng and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the 46th Annual Conference of the Association for Computer-Aided Design in Architecture (ACADIA)},\n  title     = {As-Continuous-As-Possible Multi-Material Extrusion with Gradient Composition and Transition},\n  year      = {2026},\n  address   = {Detroit, MI, USA},\n  editor    = {Teng Teng and Sara Codarin and Gretchen Wilkins},\n  month     = {October 22-24},\n  publisher = {Association for Computer-Aided Design in Architecture (ACADIA)}\n}"},{"id":28,"type_key":"C18","title":"Embodied Material Gradients: Reframing 3D-Printed Footwear through Circular Multi-Material Fabrication","authors":"Teng Teng, Yefan Zhi","venue":"ACADIA","venue_full":"ACADIA - Association for Computer Aided Design in Architecture Annual Conference","year":2026,"venue_note":null,"address":"Detroit, Michigan, USA","note":null,"highlight_note":null,"links":[],"featured":"Other Publications","topic":"Multi-Material Extrusion","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Teng-2026-Multi-Material-3DP,\n    author = {Teng Teng and Yefan Zhi},\n    booktitle = {Proceedings of the 46th Annual Conference of the Association for Computer-Aided Design in Architecture (ACADIA)},\n    title = {Embodied Material Gradients: Reframing 3D-Printed Footwear through Circular Multi-Material Fabrication},\n    year = {2026},\n    address = {Detroit, MI, USA},\n    editor = {Teng Teng and Sara Codarin and Gretchen Wilkins},\n    month = {October 22-24},\n    publisher = {Association for Computer-Aided Design in Architecture (ACADIA)}\n}"},{"id":27,"type_key":"C17","title":"3D-Printed, Post-Tensioned High-Performance Concrete Canopy","authors":"Masoud Akbarzadeh, Maximilian E. Ororbia, Amir Motavaselian, Yefan Zhi, Hua Chai, Teng Teng, Pouria Vakhshouri, Mathias Bernhard","venue":"ACADIA","venue_full":"ACADIA - Association for Computer Aided Design in Architecture Annual Conference","year":2026,"venue_note":"(Project Paper)","address":"Detroit, Michigan, USA","note":null,"highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/european-cultural-centre-exhibition/"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@inproceedings{Akbarzadeh-2026-3DP-Canopy,\n    author = {Masoud Akbarzadeh and Maximilian E. Ororbia and Amir Motavaselian and Yefan Zhi and Hua Chai and Teng Teng and Pouria Vakhshouri and Mathias Bernhard},\n    booktitle = {The Projects Catalog of the 46th Annual Conference of the Association for Computer-Aided Design in Architecture (ACADIA)},\n    title = {3D-Printed, Post-Tensioned High-Performance Concrete Canopy},\n    year = {2026},\n    address = {Detroit, MI, USA},\n    editor = {Teng Teng and Sara Codarin and Gretchen Wilkins},\n    month = {October 22-24},\n    publisher = {Association for Computer-Aided Design in Architecture (ACADIA)}\n}"},{"id":26,"type_key":"C16","title":"Point Group Symmetry of Polyhedral Diagrams in Graphic Statics","authors":"Yefan Zhi, Yao Lu, Masoud Akbarzadeh","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2026,"venue_note":null,"address":"Turin, Italy","note":null,"highlight_note":null,"links":[{"arXiv":"https://arxiv.org/abs/2604.25695","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/09/26-Point-Group-Symmetry-of-Polyhedral-Diagrams-in-Graphic-Statics.pdf"}],"featured":"Representative Works","topic":"Polyhedral Graphic Statics","type":"Conference Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@inproceedings{Zhi-2026-Symmetry,\n\tauthor = {Yefan Zhi and Yao Lu and Masoud Akbarzadeh},\n\tbooktitle = {Proceedings of the IASS 2026 Symposium: R-Evolution of Shapes: Sustainability, Re-Use, and new Design Paradigms},\n\ttitle = {Point Group Symmetry of Polyhedral Diagrams in Graphic Statics},\n\tyear = {2026},\n\taddress = {Turin, Italy},\n\teditor = {Manuello Bertetto, A. and Gabriele, S. and Marmo, F. and Micheletti, A.},\n\tmonth = {Sept 14-18},\n\tpages = {1-10}\n}"},{"id":25,"type_key":"C15","title":"Topology-Aware Identification of Independent Edges in Algebraic 3D Graphic Statics","authors":"Yao Lu, Yefan Zhi, Masoud Akbarzadeh","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2026,"venue_note":null,"address":"Turin, Italy","note":null,"highlight_note":null,"links":[{"PDF":"https://github.com/yefan-zhi/yefan-zhi-publications/blob/main/025%20Topology-Aware%20Identification%20of%20Independent%20Edges%20in%20Algebraic%203D%20Graphic%20Statics.pdf"}],"featured":"Other Publications","topic":"Polyhedral Graphic Statics","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@InProceedings{Lu-2026-Graphic-Statics,\n  author    = {Yao Lu and Yefan Zhi and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the IASS 2026 Symposium: R-Evolution of Shapes: Sustainability, Re-Use, and new Design Paradigms},\n  title     = {Topology-aware identification of independent edges in algebraic 3D graphic statics},\n  year      = {2026},\n  address   = {Turin, Italy},\n  editor    = {Manuello Bertetto, A. and Gabriele, S. and Marmo, F. and Micheletti, A.},\n  month     = {Sept 14-18},\n  pages     = {1-10},\n}"},{"id":24,"type_key":"C14","title":"Harnessing Offshore Renewable Energy from High-Intensity Focused Ocean Waves Using 3D-Printed Undulating Porous Structures","authors":"Andrea Machado Romero, Yefan Zhi, Maximilian E. Ororbia, Amir Motavaselian, Mohammad-Reza Alam, Shu Yang, Masoud Akbarzadeh","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2026,"venue_note":null,"address":"Turin, Italy","note":null,"highlight_note":null,"links":[{"PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/09/24-Harnessing-Offshore-Renewable-Energy-from-High-Intensity-Focused-Ocean-Waves-Using-3D-Printed-Undulating-Porous-Structures.pdf"}],"featured":"Featured","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@inproceedings{Machado-Romero-2026-Artificial-Reef,\n\tauthor = {Machado Romero, Andrea and Zhi,Yefan and Ororbia, Maximilian E. and Motavaselian, Amir and Alam, Mohammad-Reza and Yang, Shu and Akbarzadeh, Masoud},\n\tbooktitle = {Proceedings of the IASS 2026 Symposium: R-Evolution of Shapes: Sustainability, Re-Use, and new Design Paradigms},\n\ttitle = {Harnessing Offshore Renewable Energy from High-Intensity Focused Ocean Waves Using 3D-Printed Undulating Porous Structures},\n\tyear = {2026},\n\taddress = {Turin, Italy},\n\teditor = {Manuello Bertetto, A. and Gabriele, S. and Marmo, F. and Micheletti, A.},\n\tmonth = {Sept 14-18},\n\tpages = {1-10},\n\ttheme = {Artificial-Reef},\n\tzuozhe = {Machado-Romero}\n}"},{"id":23,"type_key":"C13","title":"3D-Printed Multi-Material Deployable Structures: Programmable Shape Transformation through Additive Manufacturing","authors":"Teng Teng, Yefan Zhi, Yi Yang, Masoud Akbarzadeh","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2026,"venue_note":null,"address":"Turin, Italy","note":null,"highlight_note":null,"links":[{"PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/09/23-3D-Printed-Multi-Material-Deployable-Structures-Programmable-Shape-Transformation-through-Additive-Manufacturing.pdf"}],"featured":"Featured","topic":"Multi-Material Extrusion","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@InProceedings{Teng-2026-Self-Folding,\n  author    = {Teng, Teng and Zhi, Yefan and Yang, Yi and Akbarzadeh, Masoud},\n  booktitle = {Proceedings of the IASS 2026 Symposium: R-Evolution of Shapes: Sustainability, Re-Use, and new Design Paradigms},\n  title     = {3D-Printed Multi-Material Deployable Structures: Programmable Shape Transformation through Additive Manufacturing},\n  year      = {2026},\n  address   = {Turin, Italy},\n  editor    = {Manuello Bertetto, A. and Gabriele, S. and Marmo, F. and Micheletti, A.},\n  month     = {Sept 14-18},\n  pages     = {1-10},\n}"},{"id":22,"type_key":"J8","title":"Design Research and Applications of Polyhedral Graphic Statics in Structural Form Finding (多面体图解静力学结构找形的设计研究与应用)","authors":"Masoud Akbarzadeh, Yefan Zhi, Yao Lu","venue":"Architectural Journal (建筑学报)","year":2026,"venue_note":"(in Chinese)","venue_full":"建筑学报 (Architectural Journal) (in Chinese)","address":null,"note":null,"highlight_note":null,"links":[{"Journal":"hhttps://www.aj.org.cn/","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/06/%E5%A4%9A%E9%9D%A2%E4%BD%93%E5%9B%BE%E8%A7%A3%E9%9D%99%E5%8A%9B%E5%AD%A6%E7%BB%93%E6%9E%84%E6%89%BE%E5%BD%A2%E7%9A%84%E8%AE%BE%E8%AE%A1%E7%A0%94%E7%A9%B6%E4%B8%8E%E5%BA%94%E7%94%A8_%E9%A9%AC%E8%8B%8F%E5%BE%B7%C2%B7%E9%98%BF%E5%85%8B%E5%B7%B4%E6%89%8E%E5%BE%B7.pdf","CNKI":"https://jzxb.cbpt.cnki.net/WKE/WebPublication/paperDigest.aspx?paperID=83f9a769-88f3-4f23-9e4f-a7ab89d51003"}],"featured":"Featured","topic":"Polyhedral Graphic Statics","type":"Journal Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@article{Akbarzadeh-2026-Graphic-Statics,\n  author = {Masoud Akbarzadeh and Yefan Zhi and Yao Lu},\n  journal = {Architectural Journal ({建筑学报})},\n  title = {Design Research and Applications of Polyhedral Graphic Statics in Structural Form Finding ({多面体图解静力学结构找形的设计研究与应用})},\n  year = {2026},\n  issn = {0529-1399},\n  number = {04},\n  pages = {26-35},\n  doi = {10.19819/j.cnki.ISSN0529-1399.202604004}\n}"},{"id":21,"type_key":"J7","title":"Surface-Toolpath Twins of Shell Components in 3D Concrete Printing for Optimized Buildability and Surface Quality","authors":"Yefan Zhi, Masoud Akbarzadeh","venue":"Journal of the IASS","venue_full":"Journal of the IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2025,"venue_note":"(Extended from conference version)","address":null,"note":null,"highlight_note":"Hangai Prize (Best researcher under 30)","links":[{"Project Page":"https://psl.design.upenn.edu/project/surface-toolpath-twins-of-shell-components-in-3d-concrete-printing/","Paper":"https://www.ingentaconnect.com/content/iass/jiass/2025/00000066/00000004/art00003","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/03/21-Surface%E2%80%90Toolpath-Twins-of-Shell-Components-in-3D-Concrete-Printing-for-Optimized-Buildability-and-Surface-Quality.pdf","Code":"https://yefan-zhi.github.io/ovenbird/","Data":"https://github.com/yefan-zhi/surface-toolpath-twins"}],"featured":"Representative Works","topic":"3D Concrete Printing","type":"Journal Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@article{Zhi-2025-Overhang-2,\n  author = {Zhi, Yefan and Akbarzadeh, Masoud},\n  journal = {Journal of the International Association for Shell and Spatial Structures},\n  title = {Surface-Toolpath Twins of Shell Components in {3D} Concrete Printing for Optimized Buildability and Surface Quality},\n  year = {2025},\n  issn = {1028-365X},\n  number = {4},\n  pages = {226-242},\n  volume = {66},\n  doi = {doi:10.20898/j.iass.2025.015},\n  eissn = {1996-9015},\n  itemtype = {ARTICLE},\n  keyword = {TOOLPATH DESIGN, CONTINUOUS SHELLS, DESIGN FOR MANUFACTURING, SURFACE RECONSTRUCTION, SHAPE STYLIZATION, BUILDABILITY, 3D CONCRETE PRINTING},\n  parent_itemid = {infobike://iass/jiass},\n  publishercode = {iass},\n  url = {https://www.ingentaconnect.com/content/iass/jiass/2025/00000066/00000004/art00003}\n}"},{"id":20,"type_key":"J6","title":"Design-to-Fabrication Workflow for 3D Concrete Printed Structures with Embedded Periodic Anticlastic Surfaces","authors":"Hua Chai, Mathias Bernhard, Yefan Zhi, Maximilian E. Ororbia, Masoud Akbarzadeh","venue":"Automation in Construction","venue_full":"Automation in Construction","year":2026,"venue_note":null,"address":null,"note":null,"highlight_note":"IF=11.5","links":[{"Project Page":"https://psl.design.upenn.edu/project/diamanti-3d-printed-post-tensioned-concrete-canopy/","Paper":"https://www.sciencedirect.com/science/article/abs/pii/S0926580526000968","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/03/20-Design-to-fabrication-workflow-for-3D-concrete-printed-structures-with.pdf"}],"featured":"Featured","topic":"Structural Systems by 3D Concrete Printing","type":"Journal Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@article{Chai-2026-3DP-Canopy,\n  author = {Chai, Hua and Bernhard, Mathias and Zhi, Yefan and Ororbia, Maximilian E. and Akbarzadeh, Masoud},\n  journal = {Automation in Construction},\n  title = {Design-to-fabrication workflow for {3D} concrete printed structures with embedded periodic anticlastic surfaces},\n  year = {2026},\n  issn = {0926-5805},\n  pages = {106855},\n  volume = {185},\n  doi = {10.1016/j.autcon.2026.106855},\n  keywords = {Computational form-finding, Additive manufacturing, 3D concrete printing, Polyhedral graphic statics, Volumetric modeling, Triply periodic minimal surface, Toolpath generation, Structural optimization},\n  publisher = {Elsevier BV}\n}"},{"id":19,"type_key":"C12","title":"Toolpath Optimization for a Post-Tensioned Concrete 3D-Printed Floor Structure","authors":"Yefan Zhi, Maximilian E. Ororbia, Amir Mostavaselian, Hua Chai, Andrea|Machado Romero, Meizhu Xu, Fang Sun, Masoud Akbarzadeh","venue":"ACM Symposium on Computational Fabrication (SCF)","venue_full":"SCF - ACM Symposium on Computational Fabrication","year":2025,"venue_note":"(Adjunct)","address":"Cambridge, MA, USA","note":null,"highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/3d-printed-dual-banded-high-performance-concrete-floor/","Paper":"https://dl.acm.org/doi/10.1145/3774746.3779257","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2026/02/19-Toolpath-Optimization-for-a-Post-Tensioned-Concrete-3D-Printed-Floor-Structure.pdf"}],"featured":"Representative Works","topic":"3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@inproceedings{Zhi-2025-3DP-Floor,\n  author = {Zhi, Yefan and Ororbia, Maximilian E. and Motavaselian, Amir and Chai, Hua and Machado Romero, Andrea and Xu, Meizhu and Sun, Fang and Akbarzadeh, Masoud},\n  booktitle = {Adjunct Proceedings of the 10th ACM Symposium on Computational Fabrication},\n  title = {Toolpath Optimization for a Post-Tensioned Concrete {3D}-Printed Floor Structure},\n  year = {2025},\n  address = {Cambridge, MA, USA},\n  month = {November 20-21},\n  pages = {1--3},\n  publisher = {ACM},\n  doi = {10.1145/3774746.3779257}\n}"},{"id":18,"type_key":"H2","title":"Prototyping 3D-Printed Compression-Dominant Funicular Floors Using Scaled Fabrication Models (And Five Other Chapters)","authors":"Yefan Zhi, Teng Teng, Masoud Akbarzadeh","venue":"Chapter in <i>Architected Structures</i> by Masoud Akbarzadeh","year":2025,"venue_note":"Edition DETAIL","venue_full":"Book Chapters","address":"Munich, Germany","note":null,"highlight_note":null,"links":[{"Book":"https://www.detail.de/de_en/architected-structures"}],"featured":"Featured","topic":"Polyhedral Graphic Statics","type":"Book Chapters","role":"As Major Contributor","bibtex":"@inbook{Zhi-2025-Detail,\n  author = {Zhi, Yefan and Teng, Teng and Akbarzadeh, Masoud},\n  editor = {Masoud Akbarzadeh},\n  pages = {88–95},\n  publisher = {DETAIL Architecture GmbH},\n  title = {Prototyping 3D-Printed Compression-Dominant Funicular Floors Using Scaled Fabrication Models},\n  year = {2025},\n  booktitle = {Architected Structures},\n  place = {Munich, Germany},\n}"},{"id":17,"type_key":"C11","title":"Surface-Toolpath Twins of Shell Components in 3D Concrete Printing for Optimized Buildability and Surface Quality","authors":"Yefan Zhi, Masoud Akbarzadeh","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2025,"venue_note":"(With extended journal version)","address":"Mexico City, Mexico","note":"Hangai Prize (Best researcher under 30)","highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/surface-toolpath-twins-of-shell-components-in-3d-concrete-printing/","Paper":"https://www.ingentaconnect.com/contentone/iass/piass/2025/00002025/00000001/art00004","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/10/246_Zhi_Akbarzadeh_IASS2025.pdf","Code":"https://yefan-zhi.github.io/ovenbird/"}],"featured":"Featured","topic":"3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@inproceedings{Zhi-2025-Overhang,\n  author = {Yefan Zhi and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the IASS 2025 Symposium: The Living Past as a Source of Innovation},\n  title = {Surface-Toolpath Twins of Shell Components in {3D} Concrete Printing for Optimized Buildability and Surface Quality},\n  year = {2025},\n  address = {Mexico City, Mexico},\n  editor = {Juan Gerardo Oliva and Juan Ignacio del Cueto and Elisa Drago},\n  month = {Oct 27-31},\n  pages = {1-16}\n}"},{"id":16,"type_key":"C10","title":"Advanced Finite Element Modeling of 3D-Printed Post-Tensioned Concrete Beams with Experimental Validation","authors":"Fahimeh Yavartanoo, Damon Bolhassani, Masoud Akbarzadeh, Maximilian E. Ororbia, Hua Chai, Yefan Zhi, Ibrahim Alachek, Leon Trousset, Mylene Bernard, Karolina Pajak","venue":"IASS","venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","year":2025,"venue_note":null,"address":"Mexico City, Mexico","note":null,"highlight_note":null,"links":[{"Paper":"https://www.ingentaconnect.com/contentone/iass/piass/2025/00002025/00000012/art00005","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/10/final_485_Author_IASS2025-1.pdf"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Yavartanoo-2025-3DP-Canopy,\n  author = {Fahimeh Yavartanoo and Damon Bolhassani and Masoud Akbarzadeh and Maximilian E. Ororbia and Hua Chai and Yefan Zhi and Ibrahim Alachek and Leon Trousset and Mylene Bernard and Karolina Pajak},\n  booktitle = {Proceedings of the IASS 2025 Symposium: The Living Past as a Source of Innovation},\n  title = {Advanced Finite Element Modeling of {3D}-Printed Post-Tensioned Concrete Beams with Experimental Validation},\n  year = {2025},\n  address = {Mexico City, Mexico},\n  editor = {Juan Gerardo Oliva and Juan Ignacio del Cueto and Elisa Drago},\n  month = {Oct 27-31},\n  pages = {1-10}\n}"},{"id":15,"type_key":"C9","title":"KlimaStol: 3D-printed Cooling Chair for Mitigating Outdoor Heat Stress","authors":"Ji Yoon Bae, Yefan Zhi, Eric Teitelbaum, Masoud Akbarzadeh, Dorit Aviv","venue":"ACADIA","venue_full":"ACADIA - Association for Computer Aided Design in Architecture Annual Conference","year":2025,"venue_note":"(Project Paper)","address":"Miami, FL, USA","note":null,"highlight_note":null,"links":[{"PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/11/BAE_ACADIA2025.pdf"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Bae-2025-3DP-Chair,\n  author = {Ji Yoon Bae and Yefan Zhi and Eric Teitelbaum and Masoud Akbarzadeh and Dorit Aviv},\n  booktitle = {The Projects Catalog of the 45th Annual Conference for the Association for Computer Aided Design in Architecture (ACADIA)},\n  title = {KlimaStol: 3D-printed Cooling Chair for Mitigating Outdoor Heat Stress},\n  year = {2025},\n  address = {Miami, FL, USA},\n  month = {November 3-8},\n  pages = {1-5},\n}"},{"id":14,"type_key":"C8","title":"Merged Force Diagrams for Expanded Tension-Compression Design Space in Polyhedral Graphic Statics","authors":"Hua Chai, Yao Lu, Yefan Zhi, Masoud Akbarzadeh","venue":"Advances in Architectural Geometry (AAG)","venue_full":"AAG - Advances in Architectural Geometry Conference","year":2025,"venue_note":null,"address":"Cambridge, MA, USA","note":null,"highlight_note":null,"links":[{"PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/11/14-Merged-Force-Diagrams-for-Expanded-Tension-Compression-Design-Space-in-Polyhedral-Graphic-Statics.pdf"}],"featured":"Featured","topic":"Polyhedral Graphic Statics","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Chai-2025-Graphic-Statics,\n  author = {Hua Chai and Yao Lu and Yefan Zhi and Masoud Akbarzadeh},\n  booktitle = {Advances in Architectural Geometry 2025},\n  title = {Merged Force Diagrams for Expanded Tension-Compression Design Space in Polyhedral Graphic Statics},\n  year = {2025},\n  address = {Cambridge, MA, USA},\n  editor = {Caitlin Mueller and Konstantinos Gavriil and John Ochsendorf and Iman Fayyad and Jonathan Rabagliati},\n  month = {Nov 16-19},\n  pages = {1--18},\n  keywords = {Structural form-finding, tension-compression structure, algebraic three-dimensional Graphic Statics, Polyhedral Graphic Statics, merge force diagrams}\n}"},{"id":13,"type_key":"J5","title":"3D Concrete Printing of Triply Periodic Minimum Surfaces for Enhanced Carbon Capture and Storage","authors":"Kun-Hao Yu, Teng Teng, So Hee Nah, Hua Chai, Yefan Zhi, Kun-Yu Wang, Yinding Chi, Peter Psarras, Masoud Akbarzadeh, Shu Yang","venue":"Advanced Functional Materials","venue_full":"Advanced Functional Materials","year":2025,"venue_note":null,"address":null,"note":null,"highlight_note":"IF=18.5","links":[{"Project Page":"https://psl.design.upenn.edu/project/arpae/","Paper":"https://advanced.onlinelibrary.wiley.com/doi/10.1002/adfm.202509259","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/05/Adv-Funct-Materials-2025-Yu-3D-Concrete-Printing-of-Triply-Periodic-Minimum-Surfaces-for-Enhanced-Carbon-Capture-and.pdf"}],"featured":"Featured","topic":"3D Concrete Printing","type":"Journal Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@article{Yu-2025-3DP-Lattice,\n  author = {Yu, Kun‐Hao and Teng, Teng and Nah, So Hee and Chai, Hua and Zhi, Yefan and Wang, Kun‐Yu and Chi, Yinding and Psarras, Peter and Akbarzadeh, Masoud and Yang, Shu},\n  journal = {Advanced Functional Materials},\n  title = {{3D} Concrete Printing of Triply Periodic Minimum Surfaces for Enhanced Carbon Capture and Storage},\n  year = {2025},\n  issn = {1616-3028},\n  number = {45},\n  pages = {2509259},\n  volume = {35},\n  doi = {10.1002/adfm.202509259},\n  publisher = {Wiley},\n  url = {https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adfm.202509259},\n}"},{"id":12,"type_key":"H1","title":"Broader Applications of Polyhedral Graphical Statics","authors":"Masoud Akbarzadeh, Yefan Zhi, Georgios Athanasopoulos, Marina Konstantatou, Maximilian E. Ororbia, Salma Mozaffari, Teng Teng, Mostafa Akbari, Hao Zheng, Hossein Mofatteh, Hamid Akbarzadeh, Armin Mirabolghasemi, Zakaria Hsain, James Pikul, Yao Lu, Shu Yang, Kun-Hao Yu, Hua Chai, Mohammad Bolhassani, Paria Yavartanoo, Allan McRobie, Joseph Robert Yost, Jen Schneider","venue":"Chapter in <i>Polyhedral Graphical Statics: For Funicular Structural Form Finding</i> by Masoud Akbarzadeh","year":2025,"venue_note":"Cambridge University Press","venue_full":"Book Chapters","address":"Cambridge, UK","note":null,"highlight_note":null,"links":[{"Book":"https://www.cambridge.org/us/universitypress/subjects/engineering/engineering-design-kinematics-and-robotics/polyhedral-graphical-statics-funicular-structural-form-finding"}],"featured":"Featured","topic":"Polyhedral Graphic Statics","type":"Book Chapters","role":"As Major Contributor","bibtex":"@inbook{Akbarzadeh-2025-Graphic-Statics,\n  author = {Akbarzadeh, Masoud and Zhi, Yefan and Athanasopoulos, Georgios and Konstantatou, Marina and Ororbia, Maximilian E. and Mozaffari, Salma and Akbari, Mostafa and Zheng, Hao and Mofatteh, Hossein and Akbarzadeh, Hamid and Armin Mirabolghasemi and Zakaria Hsain and James Pikul and Yao Lu and Shu Yang and Kun-Hao Yu and Hua Chai and Mohammad Bolhassani and Paria Yavartanoo and Allan McRobie and Joseph Robert Yost and Jen Schneider},\n  editor = {Masoud Akbarzadeh},\n  pages = {445–530},\n  publisher = {Cambridge University Press},\n  title = {Broader Applications of Polyhedral Graphic Statics},\n  year = {2025},\n  booktitle = {Polyhedral Graphical Statics: For Funicular Structural Form Finding},\n  doi = {https://doi.org/10.1017/9781108859769.012},\n  place = {Cambridge, UK}\n}"},{"id":11,"type_key":"J4","title":"Automated Toolpath Design of 3D Concrete Printing Structural Components","authors":"Yefan Zhi, Hua Chai, Teng Teng, Masoud Akbarzadeh","venue":"Additive Manufacturing","year":2025,"venue_note":null,"venue_full":"Additive Manufacturing","address":null,"note":null,"highlight_note":"IF=10.3","links":[{"Project Page":"https://psl.design.upenn.edu/project/automated-toolpath-design-of-3d-concrete-printing-structural-components/","Paper":"https://www.sciencedirect.com/science/article/pii/S2214860425000260","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/02/Zhi-2025-Continuous-Path-Automated-toolpath-design-of-3D-concrete-printing-structural-components.pdf","Code":"https://yefan-zhi.github.io/ovenbird/","Data":"https://github.com/yefan-zhi/automated-toolpath"}],"featured":"Representative Works","topic":"3D Concrete Printing","type":"Journal Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@article{Zhi-2025-Continuous-Path,\n  author = {Yefan Zhi and Hua Chai and Teng Teng and Masoud Akbarzadeh},\n  journal = {Additive Manufacturing},\n  title = {Automated toolpath design of {3D} concrete printing structural components},\n  year = {2025},\n  issn = {2214-8604},\n  pages = {104662},\n  volume = {100},\n  abstract = {3D concrete printing (3DCP) structural components for construction assemblies are known for reduced material use and enhanced efficiency and design freedom. This article investigates the limitations in the geometrical and toolpath design of 3DCP structural components and presents an automated and comprehensive approach to their toolpath design and optimization. It exploits hierarchical geometric data structures and graph algorithms to achieve the following features: (1) By analyzing the overhang of toolpaths, the method offers quantitative criteria for determining the buildability of the components and predicting failure, thus assisting design decisions. (2) It provides toolpath offsetting and filleting methods that can enhance the dimensional accuracy of the print concerning layer line textures and overfills. (3) For branching and porous geometries, the method creates as-continuous-as-possible toolpaths with minimal stop-starts based on their topologies, thus reducing seam defects. (4) It converts the toolpath into efficient visualization meshes representing layer line textures and toolpath meshes compatible with finite elements analysis. The proposed method is implemented as a plug-in software within the environment of Grasshopper® for Rhino® to facilitate designers and engineers working with 3DCP. The effectiveness and versatility of the tool are demonstrated through the toolpath design and printing of four sets of examples. The tool reduces the number of toolpaths by 90},\n  doi = {10.1016/j.addma.2025.104662},\n  keywords = {3D concrete printing, Design automation, Porous structure, Buildability, Path planning, Continuous toolpath, Surface reconstruction},\n  url = {https://www.sciencedirect.com/science/article/pii/S2214860425000260}\n}"},{"id":10,"type_key":"J3","title":"Prototyping High-Fidelity Multifunctional Objects Using Single-Nozzle Multi-Filament Additive Manufacturing System with Active Mixing","authors":"Teng Teng, Yefan Zhi, Masoud Akbarzadeh","venue":"Materials & Design","year":2025,"venue_note":null,"venue_full":"Materials & Design","address":null,"note":null,"highlight_note":"IF=8.4","links":[{"Project Page":"https://psl.design.upenn.edu/project/prototyping-high-fidelity-multifunctional-objects-using-single-nozzle-multi-filament-additive-manufacturing-system-with-active-mixing/","Paper":"https://www.sciencedirect.com/science/article/pii/S0264127524008542","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2025/02/Teng-2025-Multi-Material-3DP-Prototyping-high-fidelity-multifunctional-objects-using-single-nozzle-multi-filament-additive-manufacturing-system-with-active-mixing.pdf"}],"featured":"Featured","topic":"Multi-Material Extrusion","type":"Journal Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@article{Teng-2025-Multi-Material-3DP,\n  author = {Teng Teng and Yefan Zhi and Masoud Akbarzadeh},\n  journal = {Materials & Design},\n  title = {Prototyping high-fidelity multifunctional objects using single-nozzle multi-filament additive manufacturing system with active mixing},\n  year = {2025},\n  pages = {113479},\n  volume = {249},\n  doi = {10.1016/j.matdes.2024.113479},\n  publisher = {Elsevier BV},\n  url = {http://dx.doi.org/10.1016/j.matdes.2024.113479}\n}"},{"id":9,"type_key":"C7","title":"Functionally Graded Architectural Materials: Integrated and Tailored Thermal Insulation through Gradient Multimaterial Additive Manufacturing for Masonry Architectural Components","authors":"Teng Teng, Yefan Zhi, Masoud Akbarzadeh","venue":"ACADIA","year":2024,"venue_note":null,"venue_full":"ACADIA - Association for Computer Aided Design in Architecture Annual Conference","address":"Banff, Canada","note":null,"highlight_note":"Best Paper Award (Runner-Up)","links":[{"Project Page":"https://psl.design.upenn.edu/project/integrated-and-tailored-thermal-insulation-through-gradient-multimaterial-additive-manufacturing-for-masonry-architectural-components/","Paper":"https://psl.design.upenn.edu/Publications/#functionally-graded-architectural-materials","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/11/ACADIA2024_Papers-ITTI.pdf"}],"featured":"Featured","topic":"Multi-Material Extrusion","type":"Conference Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@inproceedings{Teng-2024-Multi-Material-3DP,\n  author = {Teng Teng and Yefan Zhi and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the 44th Annual Conference of the Association for Computer-Aided Design in Architecture (ACADIA)},\n  title = {Functionally Graded Architectural Materials: Integrated and Tailored Thermal Insulation through Gradient Multimaterial Additive Manufacturing for Masonry Architectural Components},\n  year = {2024},\n  address = {Banff, AB, Canada},\n  month = {November 14-16},\n  pages = {1--11}\n}"},{"id":8,"type_key":"C6","title":"The Effect of Post-Tensioning on the Behavior of Small-Scale 3D-Printed Concrete Beams","authors":"Damon Bolhassani, Fahimeh Yavartanoo, Javier Tapia, Masoud Akbarzadeh, Maximilian E. Ororbia, Hua Chai, Yefan Zhi, Mylene Bernard, Leon Trousset, Karolina Pajak, Blaise Waligun, Paul Kassabian","venue":"IASS","year":2024,"venue_note":null,"venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","address":"Zurich, Switzerland","note":null,"highlight_note":null,"links":[{"Paper":"https://www.semanticscholar.org/paper/The-effect-of-post-tensioning-on-the-behavior-of-Block-Boller/2b4e0cd88479bcde86863ff953f09b5b2f5b261c","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/08/Bolhassani_2024_IASS_cooncrete.pdf"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Bolhassani-2024-3DP-Beam,\n  author = {Damon Bolhassani and Fahimeh Yavartanoo and Javier Tapia and Masoud Akbarzadeh and Maximilian E. Ororbia and Hua Chai and Yefan Zhi and Mylene Bernard and Leon Trousset and Karolina Pajak and Blaise Waligun and Paul Kassabian},\n  booktitle = {Proceedings of the IASS 2024 Symposium: Redefining the Art of Structural Design},\n  title = {The effect of post-tensioning on the behavior of small-scale {3D}-printed concrete beams},\n  year = {2024},\n  address = {Zurich, Switzerland},\n  editor = {Philippe Block and Giulia Boller and Catherine DeWolf and Jacqueline Pauli and Walter Kaufmann},\n  month = {Aug 26-30},\n}"},{"id":7,"type_key":"C5","title":"Experimental Study of a Funicular Concrete Beam Prototype","authors":"Maximilian E. Ororbia, Hua Chai, Yefan Zhi, Pouria Vakhshouri, Jorge Huisa Chacon, Joseph R. Yost, Mathias Bernhard, Fahimeh Yavartanoo, Javier Tapia, Damon Bolhassani, Mylene Bernard, Leon Trousset, Karolina Pajak, Blaise Waligun, Paul Kassabian, Masoud Akbarzadeh","venue":"IASS","year":2024,"venue_note":null,"venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","address":"Zurich, Switzerland","note":null,"highlight_note":null,"links":[{"Paper":"https://www.research-collection.ethz.ch/handle/20.500.11850/717318","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/08/Ororbia_2024_IASS.pdf"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Ororbia-2024-3DP-Canopy,\n  author = {Maximilian E. Ororbia and Hua Chai and Yefan Zhi and Pouria Vakhshouri and Jorge Huisa Chacon and Joseph R. Yost and Mathias Bernhard and Fahimeh Yavartanoo and Javier Tapia and Damon Bolhassani and Mylene Bernard and Leon Trousset and Karolina Pajak and Blaise Waligun and Paul Kassabian and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the IASS 2024 Symposium: Redefining the Art of Structural Design},\n  title = {Experimental study of a funicular concrete beam prototype},\n  year = {2024},\n  address = {Zurich, Switzerland},\n  editor = {Philippe Block and Giulia Boller and Catherine DeWolf and Jacqueline Pauli and Walter Kaufmann},\n  month = {Aug 26-30},\n  pages = {1-11}\n}"},{"id":6,"type_key":"C4","title":"Design Approach for a Post-Tensioned Funicular Concrete Beam","authors":"Hua Chai, Maximilian E. Ororbia, Yefan Zhi, Ryan Welch, Billie Faircloth, Fahimeh Yavartanoo, Damon Bolhassani, Masoud Akbarzadeh","venue":"IASS","year":2024,"venue_note":null,"venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","address":"Zurich, Switzerland","note":null,"highlight_note":null,"links":[{"Paper":"https://app.iass2024.org/files/IASS_2024_Paper_470.pdf","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/08/Chai_2024_IASS.pdf"}],"featured":"Other Publications","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Supporting Author","bibtex":"@inproceedings{Chai-2024-Post-Tensioned,\n  author = {Hua Chai and Maximilian E. Ororbia and Yefan Zhi and Ryan Welch and Billie Faircloth and Fahimeh Yavartanooc and Damon (Mohammad) Bolhassani and Masoud Akbarzadeh},\n  booktitle = {Proceedings of the IASS 2024 Symposium: Redefining the Art of Structural Design},\n  title = {Design approach for a post-tensioned funicular concrete beam},\n  year = {2024},\n  address = {Zurich, Switzerland},\n  editor = {Philippe Block and Giulia Boller and Catherine DeWolf and Jacqueline Pauli and Walter Kaufmann},\n  month = {Aug 26-30},\n  pages = {1-10}\n}"},{"id":5,"type_key":"J2","title":"Designing 3D-Printed Concrete Structures with Scaled Fabrication Models","authors":"Yefan Zhi, Teng Teng, Masoud Akbarzadeh","venue":"Architectural Intelligence","venue_full":"Architectural Intelligence","year":2024,"venue_note":null,"address":null,"note":null,"highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/designing-3d-printed-concrete-structures-with-scaled-fabrication-models/","Paper":"https://link.springer.com/article/10.1007/s44223-024-00070-3","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/08/Zhi-Scaled-Fabrication-Model.pdf"}],"featured":"Representative Works","topic":"3D Concrete Printing","type":"Journal Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@article{Zhi-2024-Non-Parallel-3DP,\n  author = {Yefan Zhi and Teng Teng and Masoud Akbarzadeh},\n  journal = {Architectural Intelligence},\n  title = {Designing {3D}-printed concrete structures with scaled fabrication models},\n  year = {2024},\n  month = {8},\n  pages = {1--16},\n  volume = {3},\n  doi = {10.1007/s44223-024-00070-3},\n  issue = {1},\n  publisher = {Springer Science and Business Media LLC},\n  url = {http://dx.doi.org/10.1007/s44223-024-00070-3}\n}"},{"id":4,"type_key":"C3","title":"Diamanti: 3D-Printed, Post-Tensioned Concrete Canopy","authors":"Masoud Akbarzadeh, Hua Chai, Yefan Zhi, Maximilian E. Ororbia, Teng Teng, Mathias Bernhard, Damon Bolhassani, Fahimeh Yavartanoo, Javier Tapia, Karolina Pajak, Mylene Bernard, Leon Trousset, Paul Kassabian, Blaise Waligun","venue":"FABRICATE","year":2024,"venue_note":null,"venue_full":"FABRICATE Conference","address":"Copenhagen, Denmark","note":null,"highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/diamanti-3d-printed-post-tensioned-concrete-canopy/","Paper":"https://www.jstor.org/stable/jj.11374766.40","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2024/04/PSL-Fabricate-2024.pdf"}],"featured":"Featured","topic":"Structural Systems by 3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@inproceedings{Akbarzadeh-2024-3DP-Canopy,\n  author = {Masoud Akbarzadeh and Hua Chai and Yefan Zhi and Maximilian E. Ororbia and Teng Teng and Mathias Bernhard and Damon (Mohammad) Bolhassani and Fahimeh Yavartanoo and Javier Tapia and Karolina Pajak and Mylène Bernard and Leon Trousset and Paul Kassabian and Blaise Waligun},\n  booktitle = {FABRICATE 2024: Creating Resourceful Futures},\n  title = {Diamanti: {3D}-Printed, Post-tensioned Concrete Canopy},\n  year = {2024},\n  address = {Copenhagen, Denmark},\n  month = {April 4-6},\n  pages = {292-301},\n  doi = {10.2307/jj.11374766.40}\n}"},{"id":3,"type_key":"C2","title":"Local Optimization of Self-Supporting Shell Structures in 3D Printing: a Skeleton Method","authors":"Yefan Zhi, Hua Chai, Teng Teng, Masoud Akbarzadeh","venue":"IASS","year":2023,"venue_note":null,"venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","address":"Melbourne, Australia","note":null,"highlight_note":null,"links":[{"Paper":"https://www.ingentaconnect.com/contentone/iass/piass/2023/00002023/00000025/art00005","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2023/04/ZHI_2023_IASS_Local_Optimization_of_Self_supporting_Shell_Structures_in_3D_Printing.pdf"}],"featured":"Featured","topic":"3D Concrete Printing","type":"Conference Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@inproceedings{Zhi-2023-Overhang,\n  author = {Zhi, Yefan and Chai, Hua and Teng, Teng and Akbarzadeh, Masoud},\n  booktitle = {Proceedings of the IASS 2023 Symposium: Integration of Design and Fabrication},\n  title = {Local optimization of self-supporting shell structures in {3D} printing: a skeleton method},\n  year = {2023},\n  address = {Melbourne, Australia},\n  editor = {Y.M. Xie and J. Burry and T.U. Lee and J. Ma},\n  month = {July 10-14},\n  pages = {1-11}\n}"},{"id":2,"type_key":"C1","title":"Continuous Multi-Filament 3D Printing for Tension-Compression Structure Components","authors":"Teng Teng, Yefan Zhi, Kun-Hao Yu, Shu Yang, Masoud Akbarzadeh","venue":"IASS","year":2023,"venue_note":null,"venue_full":"IASS - The International Association for Shell and Spatial Structures Annual Symposium","address":"Melbourne, Australia","note":null,"highlight_note":null,"links":[{"Project Page":"https://psl.design.upenn.edu/project/continuous-multi-filament-3d-printing/","Paper":"https://www.ingentaconnect.com/contentone/iass/piass/2023/00002023/00000025/art00012","PDF":"https://psl.design.upenn.edu/wp-content/uploads/2023/05/TENG______IASS_Continuous_multi_filament__D.pdf"}],"featured":"Featured","topic":"Multi-Material Extrusion","type":"Conference Papers (Peer-Reviewed)","role":"As Major Contributor","bibtex":"@inproceedings{Teng-2023-Multi-Material-3DP,\n  author = {Teng, Teng and Zhi, Yefan and Yu, Kun-Hao and Yang, Shu and Akbarzadeh, Masoud},\n  booktitle = {Proceedings of the IASS 2023 symposium: Integration of Design and Fabrication},\n  title = {Continuous multi-filament {3D} printing for tension-compression structure components},\n  year = {2023},\n  address = {Melbourne, Australia},\n  editor = {Y.M. Xie and J. Burry and T.U. Lee and J. Ma},\n  month = {July 10-14},\n  pages = {126-138},\n  isbn = {978-0-646-87830-0}\n}"},{"id":1,"type_key":"J1","title":"Research on the Villagers’ Behavior Characteristics in Rural Area: Analysis Using Spatio-Temporal Data from WiFi and Surveillance Video (村落空间的人员行为特征研究―使用Wi-Fi和视频时空数据的分析)","authors":"Yefan Zhi, Ziyu Huang, Weixin Huang","venue":"Urban, Environment, Design (城市·环境·设计)","year":2023,"venue_note":"(in Chinese)","venue_full":"城市·环境·设计 (Urban, Environment, Design) (in Chinese)","address":null,"note":null,"highlight_note":"on Cover","links":[{"Journal":"https://www.uedmagazine.net/","PDF":"ResearchontheVillagers’Behavior.pdf","CNKI":"https://oversea.cnki.net/kcms2/article/abstract?v=RTWLtMhoy7RME8ohXDpU8Ql6xq3wB4lR57bd5tEGPQ4N9ElhS9W7P6AgjpvCAIRvMhrumOZHw-QX58UkQJb7a6yinuTQpHOPrLkbhroB1nv5Y1fu3X1cZtVkJMNexFcq8KmCoecDFWNFwmT0ZW4VJZKszFfVlHv71dJKwyISkwrzz8SfshsF7A==&uniplatform=OVERSEA&language=EN"}],"featured":"Featured","topic":"Data-Driven Design","type":"Journal Papers (Peer-Reviewed)","role":"As First Author","bibtex":"@article{Zhi-2023-Data-Driven-Design,\n  author = {Zhi, Yefan and Huang, Ziyu and Huang, Weixin},\n  journal = {Urban, Environment, Design ({城市·环境·设计})},\n  title = {Research on the Villagers’ Behavior Characteristics in Rural Area: Analysis Using Spatio-Temporal Data from WiFi and Surveillance Video ({村落空间的人员行为特征研究—使用Wi-Fi和视频时空数据的分析})},\n  year = {2023},\n  note = {On cover},\n  number = {4},\n  pages = {307--311},\n  doi = {10.19974/j.cnki.CN21-1508/TU.2023.08.0307},\n  language = {chinese},\n  publisher = {Liaoning Science and Technology Publishing House}\n}"}]}