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A multi-input lead-lag power system stabilizer with H¿¿¿ control performance

机译:具有H¿¿控制性能的多输入超前滞后电力系统稳定器

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In this paper we propose a design method of a low dimensional multi-input PSS which satisfies H-infinity performance. Although the H-infinity controller has a highly robust control performance, it has not been put into practical use because of the intricate of its theory and structure. Thus, to obtain high robustness, we deal with the H-infinity problem under the condition that the PSS structure is fixed as a lead-lag compensator. To this end, we add an additional reactive power input to the PSS. The parameter of the multi-input lead-lag PSS is optimized by Particle Swarm Optimization (PSO) that has an evaluation function which takes into account a closed loop H-infinity norm and a desired response. The damping of the PSS response is identified by using Prony method. The validity of the proposed PSS is demonstrated using a 3-machine 9-bus system model.
机译:在本文中,我们提出了一种满足H-无穷大性能的低维多输入PSS的设计方法。尽管H-infinity控制器具有高度鲁棒的控制性能,但由于其理论和结构错综复杂,因此尚未投入实际使用。因此,为了获得高鲁棒性,我们在PSS结构固定为超前滞后补偿器的情况下处理H无限问题。为此,我们向PSS添加了额外的无功功率输入。多输入超前滞后PSS的参数通过粒子群优化(PSO)进行了优化,该粒子群具有评估功能,该功能考虑了闭环H-无穷大范数和所需的响应。使用Prony方法确定PSS响应的阻尼。使用3机9总线系统模型演示了所提出的PSS的有效性。

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