加速车床加工中的刀具轨迹计算

A. Jimeno, S. Cuenca, A. Martinez, J. Romero
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引用次数: 0

摘要

刀具轨迹生成是计算机辅助制造中最复杂的问题之一。虽然已经开发出一些有效的加工策略,但大多数策略仅适用于标准加工。虚拟数字化算法以其自身的定义避免了这一问题,但其计算成本高,难以集成到标准加工中以采用新的ISO 14649标准。为了提高算法效率,本文提出了一种利用可重构计算(使用现场可编程门阵列)优势的虚拟数字化体系结构。采用fpga作为低成本、低频的协处理器,加快了刀具轨迹的计算速度,同时满足了计算机数控系统的实际要求。已经实现了一个原型来衡量对总计算时间的实际影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerating Tool Path Computing in Turning Lathe Machining
Tool path generation is one of the most complex problems in computer aided manufacturing. Although some efficient strategies have been developed, most of them are only useful for standard machining. The algorithm called Virtual Digitizing avoids this problem by its own definition but its computing cost is high and make it difficult for being integrated in standard machining in order to adopt the new ISO standard 14649. Presented in the paper there is a Virtual Digitizing architecture that takes the advantages of reconfigurable computing (using field programmable gate arrays) in order to improve the algorithm efficiency. FPGAs are used as low cost and low frequency coprocessor to accelerate the calculation of tool path, meeting the actual restrictions of the computer numeric controls (CNCs) at the same time. A prototype has been implemented to measure the real impact on the total computing time.
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