arXiv:2512.23333cs.CV2025-12被引 17

用多专家协作强化学习生成可编辑高精度CAD代码

CME-CAD: Heterogeneous Collaborative Multi-Expert Reinforcement Learning for CAD Code Generation

  • 引入异构多专家协同强化学习框架,融合多种模型优势
  • 在17,299个标注实例上训练,生成可执行且约束兼容的CAD代码
  • 适合工业设计自动化领域研究者与工程应用开发者

计算机辅助设计(CAD)在工业设计中至关重要,但传统建模流程复杂,难以自动生成高精度、可编辑的三维模型。现有从草图重建3D模型的方法常生成不可编辑、近似性高的模型,无法满足工业设计对精度和可编辑性的严苛要求。此外,依赖文本或图像输入的方法通常需大量人工标注,限制了其在工业场景中的可扩展性与适用性。为此,我们提出异构协同多专家强化学习(CME-CAD)范式,用于CAD代码生成。该方法融合多种模型的互补优势,促进协同学习,提升生成精确、约束兼容且完全可编辑的CAD模型的能力。我们设计两阶段训练流程:多专家微调(MEFT)与多专家强化学习(MERL)。同时,构建了开源基准CADExpert,包含17,299个实例,涵盖带精确尺寸标注的正交视图、专家生成的思维链(CoT)过程、可执行的CADQuery代码及渲染的3D模型。

原文摘要 · Abstract (English)

Computer-Aided Design (CAD) is essential in industrial design, but the complexity of traditional CAD modeling and workflows presents significant challenges for automating the generation of high-precision, editable CAD models. Existing methods that reconstruct 3D models from sketches often produce non-editable and approximate models that fall short of meeting the stringent requirements for precision and editability in industrial design. Moreover, the reliance on text or image-based inputs often requires significant manual annotation, limiting their scalability and applicability in industrial settings. To overcome these challenges, we propose the Heterogeneous Collaborative Multi-Expert Reinforcement Learning (CME-CAD) paradigm, a novel training paradigm for CAD code generation. Our approach integrates the complementary strengths of these models, facilitating collaborative learning and improving the model's ability to generate accurate, constraint-compatible, and fully editable CAD models. We introduce a two-stage training process: Multi-Expert Fine-Tuning (MEFT), and Multi-Expert Reinforcement Learning (MERL). Additionally, we present CADExpert, an open-source benchmark consisting of 17,299 instances, including orthographic projections with precise dimension annotations, expert-generated Chain-of-Thought (CoT) processes, executable CADQuery code, and rendered 3D models.

CAD生成强化学习多专家协同工业设计

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