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Real-Time Fuzzy Voltage Regulation for Distribution Networks Incorporating High Penetration of Renewable Sources

机译:高渗透率的可再生能源配电网实时模糊电压调节

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This paper proposes a coordinated voltage regulation scheme for on-load tap changer (OLTC) and renewable distributed generation (DG) units to provide a proper voltage regulation for active distribution systems. The main motivation of applying fuzzy logic is that it can deal with environments of imperfect information, and thus, it can reduce communication requirements. The proposed regulation scheme consists of three fuzzy-based control algorithms. The first control algorithm is proposed for the OLTC such that it can mitigate the effect of DG units on the voltage profile. The second control algorithm is proposed to provide a DG reactive power sharing, in order to relax the OLTC tap operation. The third control algorithm aims to partially curtail DG active powers to restore a feasible solution from the OLTC prospective. The proposed fuzzy algorithms have the advantage of providing proper voltage regulation with relaxed tap operation, utilizing only the estimated system minimum and maximum voltages. Moreover, it avoids numerical instability and convergence problems associated with centralized approaches, as it does not require to run an optimization algorithm. Real-time simulations are developed to show the effectiveness of the proposed fuzzy algorithms on a typical distribution network, using OPAL-RT real-time simulator.
机译:本文提出了有载分接开关(OLTC)和可再生分布式发电(DG)装置的协调电压调节方案,以为有源配电系统提供适当的电压调节。应用模糊逻辑的主要动机是它可以处理信息不完善的环境,因此可以减少通信需求。所提出的调节方案包括三种基于模糊的控制算法。为OLTC提出了第一种控制算法,以便它可以减轻DG单元对电压分布的影响。提出第二种控制算法以提供DG无功功率共享,以放松OLTC分接操作。第三种控制算法旨在部分减少DG有功功率,以从OLTC预期中恢复可行的解决方案。所提出的模糊算法的优点是,通过仅使用估计的系统最小和最大电压,即可通过放松的抽头操作提供适当的电压调节。而且,由于它不需要运行优化算法,因此避免了与集中式方法相关的数值不稳定性和收敛性问题。使用OPAL-RT实时模拟器开发了实时仿真,以显示所提出的模糊算法在典型配电网络上的有效性。

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