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引用次数: 0
摘要
在当代机电一体化产品开发中,采用跨学科方法管理潜在的集成风险已成为当务之急。本研究论文介绍了一种结合 Automation Studio 和 VDI 2206 方法来设计机电一体化系统的可行解决方案。研究结果凸显了这种跨学科方法在有效应对与多领域集成相关的早期挑战方面的功效。它能够同时评估和解决传统设计方法固有的局限性。在成功应用 PLC 控制器开发自动服装折叠机的过程中,所提出的流程被证明是优化机电一体化系统开发的宝贵工具。使用该流程设计的系统以实时计算模型为基础,为将来构建数字孪生系统奠定了基础。这确保了系统的全面呈现,有助于在开发和运行阶段加强理解和性能评估。采用这种方法标志着在推进机电一体化工程和确保成功实现复杂高效系统方面迈出了重要一步。
A model-Based Mechatronic System Design and Integration Process
In contemporary mechatronic product development, embracing an interdisciplinary approach has become imperative to manage potential integration risks. This research paper introduces a viable solution that combines Automation Studio and the VDI 2206 methodology to design mechatronic systems. The study's findings highlight the efficacy of this interdisciplinary approach in effectively addressing early challenges associated with multi-domain integration. It enables simultaneous evaluation and resolution of limitations inherent in traditional design methods. Successfully applied to develop an automated garment folding machine with a PLC controller, the proposed process proves to be a valuable tool in optimizing mechatronic system development. The system, designed using this process, relies on a real-time computational model as its foundation, laying the groundwork for constructing a digital twin in the future. This ensures a comprehensive representation of the system, facilitating enhanced understanding and performance assessment during the development and operational phases. The adoption of such an approach signifies a significant step forward in advancing mechatronic engineering and ensuring the successful realization of complex and efficient systems.