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不稳定时滞过程的统一PID控制器设计方法
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作者 Ashraf RAZA md nishat anwar 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2643-2661,共19页
讨论了PID控制器设计的一个统一的方法,并给出了具有时滞的高阶不稳定过程。基于直接合成(DS)方法来实现增强的负载扰动抑制。为了改善伺服响应,考虑了两自由度控制方案。提供了适当的准则在DS方案中选择所需的参考模型。使用频率响应... 讨论了PID控制器设计的一个统一的方法,并给出了具有时滞的高阶不稳定过程。基于直接合成(DS)方法来实现增强的负载扰动抑制。为了改善伺服响应,考虑了两自由度控制方案。提供了适当的准则在DS方案中选择所需的参考模型。使用频率响应匹配方法将直接合成控制器近似为PID控制器。与最近报告的方法相比,获得了更好的一致性能。 展开更多
关键词 不稳定过程 最大灵敏度 时间延迟 高阶处理 直接合成方法 频率响应匹配
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Sliding mode controller design for frequency regulation in an interconnected power system 被引量:4
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作者 Anand Kumar md nishat anwar Shekhar Kumar 《Protection and Control of Modern Power Systems》 2021年第1期77-88,共12页
In this paper, a Sliding mode controller design method for frequency regulation in an interconnected power system is presented. A sliding surface having four parameters has been selected for the load frequency control... In this paper, a Sliding mode controller design method for frequency regulation in an interconnected power system is presented. A sliding surface having four parameters has been selected for the load frequency control (LFC) system model. In order to achieve an optimal result, the parameter of the controller is obtained by grey wolf optimization (GWO) and particle swarm optimization (PSO) techniques. The objective function for optimization has been considered as the integral of square of error of deviation in frequency and tie-line power exchange. The method has been validated through simulation of a single area as well as a multi-area power system. The performance of the Sliding mode controller has also been analyzed for parametric variation and random loading patterns. The performance of the proposed method is better than recently reported methods. The performance of the proposed Sliding mode controller via GWO has 88.91% improvement in peak value of frequency deviation over the method of Anwar and Pan in case study 1 and similar improvement has been observed over different case studies taken from the literature. 展开更多
关键词 Load frequency control Sliding mode control(SMC) Grey wolf optimization Particle swarm optimization Multi-area power system
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A frequency domain design of PID controller for an AVR system 被引量:1
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作者 md nishat anwar Somnath PAN 《Journal of Zhejiang University-Science C(Computers and Electronics)》 SCIE EI 2014年第4期293-299,共7页
We propose a new proportional-integral-derivative(PID) controller design method for an automatic voltage regulation(AVR) system based on approximate model matching in the frequency domain. The parameters of the PID co... We propose a new proportional-integral-derivative(PID) controller design method for an automatic voltage regulation(AVR) system based on approximate model matching in the frequency domain. The parameters of the PID controller are obtained by approximate frequency response matching between the closed-loop control system and a reference model with the desired specifications. Two low frequency points are required for matching the frequency response, and the design method yields linear algebraic equations, solution of which gives the controller parameters. The effectiveness of the proposed method is demonstrated through examples taken from the literature and comparison with some popular methods. 展开更多
关键词 Automatic voltage regulation(AVR) PID controller Frequency response matching
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