机床实时碰撞检测专用集成电路的设计与实现

Yi-Hung Chang, I-Cheng Chang-Chien, Chung-Hsun Huang, Y. Chu
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引用次数: 2

摘要

随着科技的飞速发展,机械自动防撞系统变得越来越重要。无论是在自动驾驶车辆、精密仪器、机器人还是机床等方面,都将不得不使用这项技术。即时碰撞检测技术需要复杂的结构和算法来处理大数据操作。以前的碰撞检测受限于CPU的执行速度,并且是预先模拟的。这需要花费大量时间,而且很难实现即时检测。本文在防碰撞检测系统中,采用碰撞检测算法实现对集成电路进行大量运算的三角形碰撞检测块。碰撞检测的目标是确定三维空间中的两个物体是否相交。它将有效地减少整个碰撞检测系统的操作,实现瞬间碰撞检测系统。为了提高硬件的计算时间,本文对投影定理进行了简化,分离轴的选择策略将有效地减少硬件部分的计算时间。在台积电TN40G CMOS技术下的VLSI实现结果表明,我们的架构需要1961.386K门,工作频率为400MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Real-Time Collision Detection ASIC for Machine Tools
With the rapid development of technology, mechanical automatic anti-collision systems have become more important. Whether in self-driving vehicles, precision instruments, robots or machine tools‥etc, will have to use this technology. Instant collision detection technology requires complex structures and algorithms to handle large data operations. Previous collision detection was limited by the execution speed of the CPU and was pre-simulated. It takes a lot of time and it is difficult to achieve instant detection. In this paper, the collision detection algorithm is used to implement the triangle collision detection block in the anti-collision detection system that requires a lot of operations on the integrated circuit. The goal of collision detection is to determine whether the two objects in the three-dimensional space intersect. It will effectively reduce the operation of the entire collision detection system to achieve instant collision detection system. In order to improve the computation time of the hardware, this paper simplifies the projection theorem, and the selection strategy of the separation axis will effectively reduce the computation time of the hardware part. The VLSI implementation result under TSMC TN40G CMOS technology reveal that our architecture requires 1961.386K gates while operating at freqency 400MHz.
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