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Coordinated voltage and reactive power control scheme for smart grids with distributed generation

机译:具有分布式发电的智能电网的协调电压和无功功率控制方案

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The presence of distributed generation (DG) in electrical grids increases the complexity of the regulation process because the injection of power from these sources, which is intrinsically random for generators based on renewable sources, can alter the voltage profiles on the network buses. This requires the design of a suitable methodology aimed at assuring effective grid operation by the optimal coordination of DGs operations with traditional voltage regulating devices. In this paper, a coordinated voltage-control (CVC) scheme for smart grids with distributed generation depending on system conditions is introduced. Based on voltage and reactive power constraints three states are defined in which roles (Master/Slave)of the devices (DGs, OLTCs) are interchanged to allow maximum reactive power reserve for DGs. A mathematical formulation of optimal VAR control problem is performed for all the states in order to minimize the system real power loss. The 12-Bus test system is modified with DGs connected. Application of algorithm to the test system results in reduced system losses and improved voltage profile.
机译:电网中的分布生成(DG)的存在提高了调节过程的复杂性,因为基于可再生源的发电机的来自这些来源的电力的电力可以改变网络总线上的电压分布。这需要设计旨在通过使用传统电压调节装置的DGS操作的最佳协调来确保有效电网操作的合适方法。本文介绍了根据系统条件的具有分布式发电的智能电网的协调电压控制(CVC)方案。基于电压和无功功率约束,定义了三种状态,其中器件的角色(DGS,OLTCS)的统一(DGS,OLTC)互换,以允许DGS的最大无功功率储备。为所有状态执行最佳VAR控制问题的数学制剂,以便最小化系统实际功率损耗。 12-Bus测试系统用连接的DGS修改。算法在测试系统中的应用导致系统损耗减少和改进的电压分布。

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