A review on geometric constraint solving
Qiang Zou, Zhihong Tang, Hsi-Yung Feng, Shuming Gao, Chenchu Zhou and, Yusheng Liu

TL;DR
This review comprehensively covers the last 15 years of geometric constraint solving in CAD, highlighting advances in handling general constraint systems, their challenges, and future directions.
Contribution
It provides a detailed overview of recent developments in geometric constraint solving, especially for general systems with complex dependencies, filling a gap left by earlier reviews.
Findings
Progress in classification criteria and decomposition algorithms for general constraint systems
Detection and resolution of under- and over-constrained parts in constraint systems
Identification of remaining challenges and future research directions
Abstract
This paper presents a comprehensive review of geometric constraint solving in parametric computer-aided design (CAD), with the major focus on its advances in the last 15 years. Geometric constraint solving can date back to the very first CAD prototype, Sketchpad, in the 1960s, but serious research studies were carried out only after parametric CAD was introduced in the late 1980s. In the following 30-year history of GCS research, two development stages may be identified: (1) the first 15 years (late 1980s - mid 2000s) were primarily devoted to geometric constraint decomposition for well-constrained systems or those with only structural constraint dependencies; and (2) the second 15 years (late 2000s - now) have seen research efforts shifted towards classification criteria and decomposition algorithms for general constraint systems (with and without non-structural constraint…
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Taxonomy
TopicsManufacturing Process and Optimization · BIM and Construction Integration · Advanced Numerical Analysis Techniques
