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首页> 外文期刊>Journal of The Institution of Engineers (India): Series B >Optimized Reactive Power Compensation Using Fuzzy Logic Controller
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Optimized Reactive Power Compensation Using Fuzzy Logic Controller

机译:使用模糊逻辑控制器优化无功补偿

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Reactive power flow in a long transmission line plays a vital role in power transfer capability and voltage stability in power system. Traditionally, shunt connected compensators are used to control reactive power in long transmission line. Thyristor controlled reactor is used to control reactive power under lightly loaded condition. By controlling firing angle of thyristor, it is possible to control reactive power in the transmission lines. However, thyristor controlled reactor will inject harmonic current into the system. An attempt to reduce reactive power injection will increase harmonic distortion in the line current and vice versa. Thus, there is a trade-off between reactive power injection and harmonics in current. By optimally controlling the reactive power injection, harmonics in current can be brought within the specified limit. In this paper, a Fuzzy Logic Controller is implemented to obtain optimal control of reactive power of the compensator to maintain voltage and harmonic in current within the limits. An algorithm which optimizes the firing angle in each fuzzy subset by calculating the rank of feasible firing angles is proposed for the construction of rules in Fuzzy Logic Controller. The novelty of the algorithm is that it uses a simple error formula for the calculation of the rank of the feasible firing angles in each fuzzy subset.
机译:长输电线中的无功潮流在电力传输能力和电力系统的电压稳定性中起着至关重要的作用。传统上,并联连接的补偿器用于控制长输电线路中的无功功率。晶闸管控制电抗器用于控制轻载条件下的无功功率。通过控制晶闸管的触发角,可以控制传输线中的无功功率。但是,晶闸管控制的电抗器会将谐波电流注入系统。尝试减少无功功率注入将增加线路电流中的谐波失真,反之亦然。因此,在无功功率注入和电流谐波之间要进行权衡。通过最佳地控制无功功率注入,可以将电流中的谐波带入指定的限值内。本文采用模糊逻辑控制器来获得补偿器无功功率的最佳控制,以将电流中的电压和谐波保持在极限范围内。提出了一种通过计算可行触发角的秩来优化每个模糊子集中的触发角的算法,用于模糊逻辑控制器中规则的构造。该算法的新颖之处在于,它使用一个简单的误差公式来计算每个模糊子集中的可行点火角的等级。

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