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A combined MV and LV network voltage regulation strategy for the reduction of voltage unbalance

机译:中压和低压网络电压调节组合策略可减少电压不平衡

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Voltage regulation is a crucial practice in distribution networks to ensure that the steady state voltage levels at customer connection points are within prescribed limits. In addition to ensuring required voltage levels, within a range of power quality problems, voltage unbalance is an important factor that determines the quality of supply. With regard to voltage regulation, one of the common methods employed by distribution network service providers is volt/var control. This method regulates the voltage of a network by controlling the voltage at the zone substation and by the injection or absorption of reactive power at different locations in the network. Typically, volt/var control is employed in medium voltage networks only, which overlooks the growth of distributed generation in low voltage networks. The increasing penetration of distributed generation may change the paradigm of voltage regulation to the extent that traditional volt/var control may not be effective. However, the effects of this increasing penetration can be countered by exploiting the versatility of distributed generation devices. This paper proposes a holistic volt/var control approach which takes into account voltage regulation in both medium and low voltage networks and voltage unbalance reduction in a low voltage network. The proposed control method utilises an on load tap changer and a fixed capacitor bank in the medium voltage network and also photovoltaic inverters in the low voltage network. The proposed control is tested on a modified IEEE 13 node test feeder over a 24-hour period over which the load varies. The results demonstrated that the proposed control method is able to perform voltage regulation and voltage unbalance reduction concurrently.
机译:电压调节是配电网络中的一项重要实践,以确保用户连接点处的稳态电压水平在规定的范围内。除了确保所需的电压水平外,在一系列电能质量问题中,电压不平衡也是决定电源质量的重要因素。关于电压调节,配电网络服务提供商采用的常见方法之一是电压/无功控制。该方法通过控制区域变电站的电压以及通过在网络的不同位置注入或吸收无功功率来调节网络的电压。通常,电压/无功控制仅用于中压网络,而忽略了低压网络中分布式发电的增长。分布式发电渗透的增加可能会改变电压调节的范式,以至于传统的电压/电压控制可能无效。但是,可以通过利用分布式发电设备的多功能性来抵消这种不断增加的渗透的影响。本文提出了一种整体电压/无功控制方法,该方法考虑了中低压网络中的电压调节以及低压网络中的电压不平衡降低。所提出的控制方法利用中压电网中的有载抽头变换器和固定电容器组以及低压电网中的光伏逆变器。在负载变化的24小时内,在改进的IEEE 13节点测试馈线上对建议的控件进行了测试。结果表明,所提出的控制方法能够同时进行电压调节和电压不平衡降低。

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