摘要
抑制非最小相位系统的右半平面零点所造成的负调至今仍是个开放问题 .以同时抑制非最小相位系统的超调、负调和调整时间为目的 ,合理融合遗传算法的并行搜索结构和模拟退火的可控性概率突跳 ,提出了设计一类PID控制器的混合优化策略 .基于典型系统的数值仿真验证了混合策略的有效性和对系统的适应性 ,以及所设计控制器的优越性 .
It is still an open problem to eliminate the undershoot caused by zeros in the right-half plane of non-minimum phase systems (NMPS). To decrease overshoot, undershoot and settling time of NMPS simultaneously, this paper reasonably combines the parallel search structure of genetic algorithm with the controllable jumping property of simulated annealing to propose a hybrid strategy for designing a class of PID controller. Numerical simulations based on typical systems demonstrate the effectiveness and the adaptability of the hybrid strategy on NMPS, as well as the superiority of the designed controller.
出处
《自动化学报》
EI
CSCD
北大核心
2003年第1期135-141,共7页
Acta Automatica Sinica
基金
国家自然科学基金 (6 0 2 0 40 0 8)资助~~