直流电动机模拟速度控制器设计与重构的内在硬件演化

D. Gwaltney, M. I. Ferguson
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引用次数: 13

摘要

可进化的硬件提供了进化模拟电路以产生放大器和滤波功能的能力。传统的模拟控制器设计采用这些相同的功能。用于控制直流电机轴速的模拟控制器是在利用第二代现场可编程晶体管阵列(FPTA2)的可进化硬件平台上发展起来的。将进化控制器的性能与传统的比例积分(PI)控制器进行了比较。这表明,硬件的发展能够创造一个紧凑的设计,提供良好的性能,同时使用比传统设计少得多的功能电子元件。此外,还探讨了通过重新配置设计来使用硬件进化来提供容错。实验结果表明,面对破坏性的诱发故障,系统的性能可以得到明显的恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intrinsic hardware evolution for the design and reconfiguration of analog speed controllers for a DC Motor
Evolvable hardware provides the capability to evolve analog circuits to produce amplifier and filter functions. Conventional analog controller designs employ these same functions. Analog controllers for the control of the shaft speed of a DC motor are evolved on an evolvable hardware platform utilizing a second generation field programmable transistor array (FPTA2). The performance of an evolved controller is compared to that of a conventional proportional-integral (PI) controller. It is shown that hardware evolution is able to create a compact design that provides good performance, while using considerably less functional electronic components than the conventional design. Additionally, the use of hardware evolution to provide fault tolerance by reconfiguring the design is explored. Experimental results are presented showing that significant recovery of capability can be made in the face of damaging induced faults.
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