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Novel coordinated secondary voltage control strategy for efficient utilisation of distributed generations

机译:新型协调二次电压控制策略,可有效利用分布式发电

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摘要

This study presents a novel coordinated secondary voltage control (CSVC) and reactive power management scheme for efficient utilisation of distributed energy resources in a smart distribution network. The proposed controller is developed to achieve efficient voltage regulation and to maximise the dynamic reactive power reserve in a distribution network to react during system contingencies. The simulated distribution system, including an on-load tap changer (OLTC) and distributed energy resources, is implemented using PSCAD/EMTDC. The CSVC is designed to provide slow and medium speed responses, using low-pass filters for OLTC and diesel generators, respectively, and a fast response by utilising inverter-based distributed energy resources. Therefore it applies a control strategy with different bandwidth dedicated by the decentralised voltage controllers and reactive power management scheme. The CSVC is used to enhance the bus voltage control by utilising the reactive power loading capabilities among distributed energy resources and on-load tap changers of the substation transformer. A comprehensive simulation has verified the superior performance of the proposed coordinated secondary voltage control with the reactive power management scheme for enhancing the voltage profile and the fault ride-through capability, ensuring higher dynamic reactive power reserves in a distribution network, and improving the transient stability margin.
机译:这项研究提出了一种新颖的协调二次电压控制(CSVC)和无功功率管理方案,可有效利用智能配电网中的分布式能源。开发提出的控制器是为了实现有效的电压调节并最大化配电网络中的动态无功功率储备,以便在系统突发事件期间做出反应。使用PSCAD / EMTDC实现了模拟的配电系统,包括有载分接开关(OLTC)和分布式能源。 CSVC旨在通过分别为OLTC和柴油发电机使用低通滤波器来提供慢速和中速响应,并通过利用基于逆变器的分布式能源来提供快速响应。因此,它应用了分散电压控制器和无功功率管理方案专用的具有不同带宽的控制策略。 CSVC通过在变电站变压器的分布式能源和有载分接开关之间利用无功负载能力来增强总线电压控制。全面的仿真已通过无功功率管理方案验证了所建议的二次电压协调控制的优越性能,该无功功率管理方案可增强电压曲线和故障穿越能力,确保配电网中更高的动态无功功率储备,并改善暂态稳定性余量。

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