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Performance evaluation of sinusoidal and Space Vector Pulse-Width-Modulation for power quality enhancement in distributed generation systems

机译:分布发电系统电能质量增强的正弦和空间矢量脉冲宽度调制的性能评估

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The installation of Distributed Generation (DG) systems leads to harmonic distortions, unequal power sharing among the host feeders and system voltage and frequency imbalances. These power quality issues arise mostly when main grid interacts with DG systems or when they operate in islanded mode. Henceforth, with a two-step approach as this paper presents, proper frequency and voltage control of DG systems is acquired to solve these problems. In the first step, a comparison in terms of harmonic content is performed between Sinusoidal Pulse-Width-Modulation (SPWM) and Space Vector Pulse-Width-Modulation (SVPWM) techniques for interface inverters in distributed configuration. Secondly, an improved droop control method is implemented in order to regulate voltage and frequency as a function of customized droop equations. Validation of design method and parametric analysis of results is provided with the help of simulations.
机译:分布式发电(DG)系统的安装导致谐波扭曲,主机馈线和系统电压和频率不平衡之间的不等功率共享。当主电网与DG系统交互或在岛屿模式下运行时,这些电力质量问题主要出现。此后,通过本文提出的两步方法,获取DG系统的适当频率和电压控制以解决这些问题。在第一步中,在分布式配置中的界面脉冲宽度调制(SPWM)和空间矢量脉冲宽度调制(SVPWM)技术之间进行谐波含量的比较。其次,实现了改进的下垂控制方法,以便调节作为定制下垂方程的函数的电压和频率。在模拟的帮助下提供了对结果的设计方法和参数分析的验证。

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