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Carrier Based Synchronous control and performance analysis of an S-PSI using PV for Microgrid Applications

机译:微电网应用中基于PV的S-PSI的基于载波的同步控制和性能分析

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A carrier-based synchronous type single phase-phase synchronous inverter (S-PSI) is proposed to develop the inverter output phase and voltage waveform. The major problem of the microgrid connected inverter is unbalanced DC supply, high switching loss, power quality and phase error. Therefore, to overcome those issues, a phase synchronous technique can perception not only conventional DC to AC inverter but also low-frequency inverter source ripple current reduction with lower switches of the inverter. However, a carrier-based synchronous PWM control technique is proposed for capable of regulating both side of the inverter input and output performance. The working performance of the S-PSI is analyzed, including steady-state behavior, efficiency, and circuit parameters. As well, the equivalence of the switching control technique and the similarity of inverter evaluate circuit parameters are exposed between this S-PSI and a traditional two-level inverter. In addition, lowpass LCL filters are utilized to convert squire wave to sine wave with same frequency and to reduce the higher harmonic distortion of the microgrid voltage. Balanced resistive load of R
机译:提出了一种基于载波的同步型单相同步逆变器(S-PSI),以开发逆变器的输出相位和电压波形。连接微电网逆变器的主要问题是直流电源不平衡,高开关损耗,电能质量和相位误差。因此,为了克服这些问题,相位同步技术不仅可以感知常规的DC-AC逆变器,而且可以通过降低逆变器的开关来感知低频逆变器源纹波电流的减小。但是,提出了一种基于载波的同步PWM控制技术,该技术能够调节逆变器的输入和输出性能。分析了S-PSI的工作性能,包括稳态行为,效率和电路参数。同样,开关控制技术的等效性和逆变器评估电路参数的相似性也暴露在该S-PSI和传统的两电平逆变器之间。此外,低通LCL滤波器用于将相同频率的正弦波转换为正弦波,并降低微电网电压的高次谐波失真。 R的平衡电阻负载

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