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Centralized Support Distributed Voltage Control by Using End-Users as Reactive Power Support

机译:通过将最终用户用作无功功率支持来集中支持分布式电压控制

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摘要

New generation of loads and the power factor correction devices of these loads provides an opportunity for distribution system operators to use them as reactive power support. In this paper, the integration of these end-user reactive-power-capable devices is investigated to provide voltage support to the grid. Due to the limitation on the number of smart homes, at first, the effective locations for injecting the reactive power into the distribution system is determined (i.e., buses) and showed how reactive power resources connected at those buses can be controlled. For control purposes, centralized support distributed voltage control (CSDVC) algorithm is proposed and the distribution system is decomposed into different areas by using -decomposition. Then buses, as the candidate buses, for providing reactive power are obtained. Optimum reactive power injection in every candidate bus in each area and tap position of the regulator, if necessary, is calculated by using genetic algorithm. The CSDVC is proposed to cover the inaccuracy of the loads forecasting and the control area centers faults, and also to provide secure reactive power control. The proposed approach is tested on the IEEE 33 and 69 buses distribution test systems.
机译:新一代负载以及这些负载的功率因数校正设备为配电系统运营商提供了将其用作无功功率支持的机会。在本文中,研究了这些最终用户无功功率设备的集成,以为电网提供电压支持。由于智能房屋数量的限制,首先,确定将无功功率注入配电系统的有效位置(即,总线),并示出如何控制在那些总线处连接的无功功率资源。出于控制目的,提出了集中支持的分布式电压控制(CSDVC)算法,并使用-decomposition将配电系统分解为不同的区域。然后,获得用于提供无功功率的总线,作为候选总线。如有必要,使用遗传算法计算在每个区域和调节器的抽头位置中的每个候选母线中的最佳无功功率注入。建议使用CSDVC来覆盖负荷预测和控制区域中心故障的不准确性,并提供安全的无功功率控制。该方法在IEEE 33和69总线分布测试系统上进行了测试。

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