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Optimal design of controllers for power network connected SOFC using of multi-objective PSO

机译:基于多目标PSO的电网SOFC控制器优化设计

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In this paper, we study the concept and forming manner of Solid Oxide Fuel Cell (SOFC) into the electrical system and then, its effect on small signal stability is investigated. The paper illustrates the essential module, mathematical analysis and small signal modeling of the SOFC joined to single machine system. The aim of this study is to reduce power oscillations in the presence of the SOFC with optimal stabilizer. The multi-objective Particle Swarm Optimization (MOPSO) technique has been used for designing a Power System Stabilizer (PSS) in order to improve the performance of the system. Two objective functions are regarded for the design of PSS parameters in order to maximize the damping factor and the damping ratio of the system. To evaluate the efficiency of the proposed optimal stabilizers, four scenarios are considered and then, its results have been analyzed. The proposed PSS tuning technique can be applied to a multi-machine system connected to the SOFC. The efficiency of MOPSO based proposed PSS on the oscillations the system related to SOFC is illustrated by time-domain simulation and also, the comparison of the MOPSO based proposed PSS with the PSS based-single objective method has been prepared.
机译:本文研究了固体氧化物燃料电池(SOFC)进入电气系统的概念和形成方式,然后研究了其对小信号稳定性的影响。本文阐述了加入单机系统的SOFC的基本模块,数学分析和小信号建模。这项研究的目的是减少具有最佳稳定器的SOFC时的功率振荡。多目标粒子群优化(MOPSO)技术已用于设计电力系统稳定器(PSS),以提高系统性能。 PSS参数的设计考虑了两个目标函数,以最大化系统的阻尼系数和阻尼比。为了评估所提出的最佳稳定剂的效率,考虑了四种情况,然后对其结果进行了分析。所提出的PSS调整技术可以应用于连接到SOFC的多计算机系统。通过时域仿真说明了基于MOPSO的拟议PSS在与SOFC相关的系统上的振动效率,并且将基于MOPSO的拟议PSS与基于PSS的单目标方法进行了比较。

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