Papers
2
Total Citations
7
H-Index
2
About
Yi Qian Goh is an emerging researcher working at the intersection of computational design, digital fabrication, and architectural engineering. Their scholarship centers on innovative form-finding methodologies that bridge physical simulation with advanced robotic fabrication techniques, drawing inspiration from classical architectural experiments with minimal surfaces and tensile structures. Goh's most notable contributions involve developing workflows that integrate parametric design tools with industrial robotics to enable rapid and flexible fabrication of complex architectural components. Their 2018 paper on the production of glass fiber reinforced concrete panels using thermoformed molds has garnered 5 citations, demonstrating growing interest in their approach to revisiting traditional form-finding processes through a contemporary digital lens. An earlier 2017 companion study further established the conceptual and technical groundwork for fusing physical material simulation with robotic fabrication pipelines. What distinguishes Goh's research is its emphasis on practical applicability — translating experimental computational processes into tangible, manufacturable outcomes. By combining parametric design flexibility with the precision and speed of robotic systems, their work opens new possibilities for architectural fabrication at scale. Though still building a citation profile, Goh's research addresses a timely and significant challenge in architecture and engineering: making computationally complex forms physically realizable.
Research Focus
Key Achievements
Top Papers
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