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An enhanced controller for shunt active filter interfacing renewable energy source and grid

机译:用于将可再生能源与电网连接的并联有源滤波器的增强型控制器

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Develoving efficient interfacing technologies to interconnect renewable energy sources with grid is a promising research area in renewable energy related applications. The interfacing unit becomes crucial as renewable energy sources when directly connected to grid, can inject harmonic components that may deteriorate the quality of power. This paper proposes a mechanism to use shunt active filter as an interface between renewable energy sources and grid with a modified and efficient control scheme. The shunt active filter with this modified controller controls the real power supplied by the grid (source) in addition to its usual functions such as reactive power compensation, power factor correction and harmonic elimination. Performance of the modified Icosφ controller is compared with that of IRPT control algorithm. Two nonlinear loads are considered here namely AC voltage controller as soft starter for induction motor and a diode bridge rectifier feeding resistive load. Simulation of proposed system proves the effectiveness of using a shunt active filter as the interfacing unit for grid integrated renewable energy systems.
机译:开发有效的接口技术以将可再生能源与电网互连是可再生能源相关应用领域的一个有前途的研究领域。接口单元变得至关重要,因为当可再生能源直接连接到电网时,它会注入谐波分量,这可能会降低电源质量。本文提出了一种机制,将分流有源滤波器用作可再生能源与电网之间的接口,并采用了一种经过改进的高效控制方案。除具有常规功能(例如无功功率补偿,功率因数校正和谐波消除)外,带有改进型控制器的并联有源滤波器还控制电网(源)提供的有功功率。将改进的Icosφ控制器的性能与IRPT控制算法的性能进行比较。这里考虑了两个非线性负载,即交流电压控制器(作为感应电动机的软启动器)和二极管桥式整流器(提供电阻负载)。拟议系统的仿真证明了使用并联有源滤波器作为并网可再生能源系统的接口单元的有效性。

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