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Examination of the effect of the reactive power control of photovoltaic systems on electric power grids and the development of a voltage-regulation method that considers feeder impedance sensitivity

机译:检验光伏系统的无功功率控制对电网的影响以及考虑馈线阻抗灵敏度的调压方法的发展

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摘要

When relatively high-capacity renewable photovoltaic (PV) systems are connected to a grid, they can increase or decrease the voltage along feeders because of reverse power flow, even exceeding +/- five percent of the rated voltage. Nowadays, grid-connected inverter-based PV systems that can control reactive power can alleviate such an increase or decrease in voltage by adjusting the reactive power, which is referred to as Volt/Var control and management. Therefore, the objective of this paper is to (a) perform case studies to analyze the steady-state response of a large distribution network (i.e., with more than 1000 buses) with high-capacity PV systems that can control Volt/Var (i.e., either producing or consuming reactive power) and (b) present a Volt/Var-control method for three-phase voltage regulation that uses the positive-sequence sensitivity impedance matrix with power-factor constraints. This method is verified in the IEEE 34-bus test feeder. Thus, the proposed methods can be used to regulate the voltage of a bus to which a PV system is connected if the system controls reactive power. These proposed methods can also be used for various impact studies for the operation or planning of distribution systems with such PV systems.
机译:将容量相对较高的可再生光伏(PV)系统连接到电网时,由于反向功率流,它们可能会增加或降低馈线的电压,甚至超过额定电压的+/- 5%。如今,可以控制无功功率的并网逆变器光伏系统可以通过调节无功功率来减轻电压的这种升高或降低,这被称为伏特/瓦尔控制和管理。因此,本文的目的是(a)进行案例研究,以分析具有可控制伏特/伏特的大容量光伏系统的大型配电网络(即具有1000多个总线)的稳态响应。 (产生或消耗无功功率),并且(b)提出了一种用于三相电压调节的伏/瓦尔控制方法,该方法使用具有功率因数约束的正序灵敏度阻抗矩阵。该方法已在IEEE 34总线测试馈送器中得到验证。因此,如果系统控制无功功率,则所提出的方法可用于调节光伏系统所连接的总线的电压。这些提议的方法也可用于各种影响研究,以用于具有此类PV系统的配电系统的运行或计划。

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