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首页> 外文期刊>Renewable Power Generation, IET >Decoupled controller for single-phase grid connected rooftop PV systems to improve voltage profile in residential distribution systems
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Decoupled controller for single-phase grid connected rooftop PV systems to improve voltage profile in residential distribution systems

机译:用于单相并网屋顶光伏系统的去耦控制器,可改善住宅配电系统中的电压分布

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摘要

Unity power factor injection from single-phase photovoltaics (PVs) located towards the end of a residential feeder leads to voltage rise problems. Also, unbalanced current injection due to variable solar insolation results in voltage unbalancing and makes the situation worst. A decoupled controller for a single-phase PV inverter is proposed to improve the voltage profile of the distribution feeders. The proposed controller consists of the following components: voltage regulator (to control the amount of reactive power injection), outer voltage control loop (slow controller to set the reference for the inner current loop), inner current control loop (to control the PV inverters) and modified second-order generalised integrator (to generate fundamental frequency). A sample distribution systems consisting of several PVs located in all three phases and a three-phase induction motor load is considered. The real-time hardware-in-the-loop simulations are performed to test the efficacy of the proposed controller scheme. Results show the improvement in voltage regulation of different buses.
机译:从位于住宅馈线末端的单相光伏(PV)注入单位功率因数会导致电压上升问题。另外,由于日照变化而导致的电流注入不平衡会导致电压不平衡,并使情况变得更糟。提出了一种用于单相光伏逆变器的去耦控制器,以改善配电馈线的电压分布。拟议的控制器由以下组件组成:电压调节器(用于控制无功功率注入的量),外部电压控制环路(用于为内部电流环路设置参考值的慢速控制器),内部电流控制环路(用于控制PV逆变器) )和改进的二阶广义积分器(以生成基频)。考虑了一个样品分配系统,该系统由位于所有三相中的几个PV和一个三相感应电动机负载组成。执行实时硬件在环仿真以测试所提出的控制器方案的有效性。结果表明不同总线的电压调节有所改善。

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