一种用于光伏系统的无变压器单相对称z源HERIC逆变器

Kerui Li, Yanfeng Shen, Yongheng Yang, Zian Qin, F. Blaabjerg
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引用次数: 13

摘要

本文提出了一种低漏电流的无变压器单相对称z源HERIC逆变器。这是利用高效可靠的逆变器概念(HERIC)和阻抗源(z源)网络来保持恒定的共模电压,从而在光伏应用中降低泄漏电流的尝试。对称z源HERIC逆变器需要两个额外的有源开关。然而,两个开关的工作频率为线路频率,因此损耗可以忽略不计。更重要的是,在低漏电流和谐波方面的性能得到了改善。进行了实验测试,以验证所提出系统的分析和性能。
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A transformerless single-phase symmetrical Z-source HERIC inverter with reduced leakage currents for PV systems
A transformerless single-phase symmetric Z-source HERIC inverter featuring low leakage currents is presented in this paper. It is an attempt to utilize the Highly Efficient and Reliable Inverter Concept (HERIC) and an impedance source (Z-source) network to maintain a constant common mode voltage and thus low leakage currents in PV applications. The symmetric Z-source HERIC inverter requires two extra active switches. Nevertheless, the operation frequency of the two switches is the line frequency, leading to negligible losses. More importantly, the performance in terms of low leakage currents and harmonics is improved. Experimental tests are performed to validate the analysis and performance of the proposed system.
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Duty phase shift technique for extended-duty-ratio boost converter for reducing device voltage stress over wider operating range Reliability evaluation of an impedance-source PV microconverter A hybrid flyback LED driver with utility grid and renewable energy interface A transformerless single-phase symmetrical Z-source HERIC inverter with reduced leakage currents for PV systems A carrier magnitude varying modulation for distributed static series compensator to achieve a maximum reactive power generating capability
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