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A Power Decoupling Method with Small Capacitance Requirement based on Single-Phase Quasi-Z-Source Inverter for DC Microgrid Applications

机译:基于单相Quasi-Z源逆变器进行DC微电网应用的小电容要求的功率去耦方法

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This paper proposes a power decoupling method based on single-phase quasi-Z-source inverter (SPQZSI) for DC microgrid applications. Single-phase inverter would cause harmonic issues especially voltage ripple in DC microgrid because of low-frequency (100/120Hz) power ripple. Non-linear load or source would generate other harmonic on the common DC link as well. In order to achieve power decoupling, large electrolytic capacitor is required and connected to DC link in H-bridge inverters. However, electrolytic capacitor would affect the power density, reliability and lifetime of DC microgrid. Quasi-Z-source inverter is utilized instead for capacitance reduction. In terms of low-frequency ripple control with SPQZSI, an effective control method is necessary to regulate the current/voltage of both AC port and DC port. The theoretical analysis about capacitance requirement with power decoupling in SPQZSI is done first. Next, an advanced control method based on generalised predictive control is proposed to decouple low -frequency power ripple. The corresponding control law and predictor are designed as well. Experimental results with 500W prototype verify the stability, feasibility and superior performance of the proposed power decoupling method based on SPQZSI.
机译:本文提出了一种基于单相Quasi-Z源逆变器(SPQZSI)的功率去耦方法,用于DC微电网应用。单相逆变器将导致谐波问题尤其是DC微电压的电压纹波,因为低频(100 / 120Hz)功率纹波。非线性负载或源也会在公共直流链路上生成其他谐波。为了实现功率去耦,需要大型电解电容并连接到H桥逆变器中的DC链路。然而,电解电容器会影响DC微电网的功率密度,可靠性和寿命。代替电容降低,使用准Z源逆变器。在使用SPQZSI的低频纹波控制方面,有效的控制方法是调节AC端口和DC端口的电流/电压。首先完成关于SPQZSI中电力去耦的电容要求的理论分析。接下来,提出了一种基于广义预测控制的先进控制方法,以解耦低罚量电力纹波。相应的控制法和预测器也是如此设计。采用500W原型的实验结果验证了基于SPQZSI的所提出的功率去耦方法的稳定性,可行性和优越性。

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