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Power and frequency stabilization of an isolated hybrid power system incorporating scaling factor based fuzzy logic controller

机译:包含基于比例因子的模糊逻辑控制器的混合动力系统的功率和频率稳定

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This study aims to propose a more effective fuzzy logic controller (FLC) to achieve minimum deviation in frequency and power of an isolated hybrid power system. Here, in the FLC, scaling factor has been introduced and are optimized by using quasi opposition harmony search (QOHS) algorithm along with the other tunable parameters of the considered system. Performances of the scaling factor based FLC's are compared with their corresponding proportional-integral-derivative controller, in terms of several performance measures such as integral absolute error (IAE), integral of multiplied absolute error (ITAE), integral square error (ISE) and integral of time multiplied square error (ITSE), in addition to the deviation due to step load perturbations. In each case, the scaling factor based FLC model shows an extraordinarily upgraded performance over its conventional counterpart.
机译:本研究旨在提出一种更有效的模糊逻辑控制器(FLC),以实现隔离式混合动力系统的频率和功率最小偏差。此处,在FLC中,已经引入了比例因子,并通过使用拟对冲和声搜索(QOHS)算法以及所考虑系统的其他可调参数对其进行了优化。将基于比例因子的FLC的性能与其相应的比例-积分-微分控制器进行比较,包括几种性能指标,例如积分绝对误差(IAE),乘法绝对误差积分(ITAE),积分平方误差(ISE)和时间积分乘以平方误差(ITSE),以及由于阶跃载荷扰动引起的偏差。在每种情况下,基于比例因子的FLC模型均比其常规模型具有非凡的性能提升。

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