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Grid Integration of Three-Phase Single-Stage PV System Using Adaptive Laguerre Filter Based Control Algorithm Under Nonideal Distribution System

机译:非理想配电系统下基于自适应Laguerre滤波控制算法的三相单阶段光伏系统网格集成

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摘要

The increasing integration of utility with renewable sources of energy has resulted into serious issues of power quality (PQ) deterioration primarily in a scenario of weak distribution grid. In order to improve the PQ, efficient implementation of a control algorithm for the solar energy conversion system interfaced to the grid is paramount. This article illustrates the usage of an adaptive Laguerre filter based control technique for optimal operation providing distribution static compensator capabilities along with load balancing, power factor correction and harmonicsmitigation. Moreover, it provides the active power transfer to the grid together with feeding the nonlinear and linear loads. In addition, the system performance according to an IEEE-519 standard has been verified, hence it is proficient in maintaining the PQ. The Laguerre filter offers the benefits of reduced computational time in addition with the alleviation in model complexity predominant during abnormal grid conditions. By utilizing maximum power point tracking, the efficient utilization of solarPVarray is accomplished with a perturb and observe method. For validating performance of the proposed system, it is examined through simulation results. Furthermore, a prototype is developed for validation and test results corroborate reliable operation under nonideal grid conditions comprising of wide range of load variations, voltage sag, swell, distortion, and unbalance conditions.
机译:公用事业与可再生能源的日益融合已导致严重的电力质量(PQ)问题恶化,主要是在配电网薄弱的情况下。为了提高PQ,对于与电网连接的太阳能转换系统,控制算法的有效实施至关重要。本文说明了基于自适应Laguerre滤波器的控制技术在最佳运行中的使用,该技术可提供配电静态补偿器功能以及负载平衡,功率因数校正和谐波减轻功能。此外,它还提供有功功率到电网的传输以及非线性和线性负载的馈电。另外,已经验证了根据IEEE-519标准的系统性能,因此可以熟练地维护PQ。 Laguerre滤波器的优点是减少了计算时间,此外还减轻了异常网格条件下主要导致的模型复杂性。通过利用最大功率点跟踪,通过扰动和观察方法可有效利用solarPVarray。为了验证所提出系统的性能,通过仿真结果对其进行了检查。此外,还开发了一个用于验证和测试结果的原型,以验证在非理想电网条件下的可靠运行,该条件包括大范围的负载变化,电压骤降,骤升,畸变和不平衡条件。

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