基于进化算法的三相有源整流器控制系统优化

M. Ali, Lei Wang, Guo-zhu Chen
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引用次数: 2

摘要

随着有源整流器的广泛应用,包括智能算法在内的各种控制策略在有源整流器中得到了初步应用,但比例-积分-导数(PID)算法仍在控制系统中占主导地位。数字处理器对在线智能算法要求高,PID参数查找困难,使有源整流器无法达到最佳性能。本文提出了一种新的目标函数,利用离线进化算法对有源整流器的PID控制参数进行优化。首先建立了精确的系统模型,然后介绍了传统的设计PI参数,并指出了其不足之处。随后,详细提出了利用EA进行优化的流程,使PID控制器实现“即插即用”,并通过5kW样机对其可行性进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control System optimization of Three-Phase Active Rectifier Based on Evolutionary Algorithm
With the widespread use of active rectifier, different control strategies including intelligent algorithms get preliminarily application in it, but the proportional-integral-derivative (PID) algorithm still dominates the control system. The high demanding of digital processor for online intelligent algorithms and the difficult searching for PID parameters disable the optimal performance of active rectifier. This paper proposes a new objective function for optimizing the PID control parameters using the offline evolutionary algorithm (EA) applied in the active rectifier. It starts with the construction of accurate system model, then introduces the conventional design PI parameters and points out its drawbacks. Subsequently, the optimizing process using EA is proposed in detail to make the PID controller become “plugand-play”, and its feasibility has been simulated and verified through the 5kW prototype.
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