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Current Harmonics from Single-Phase Grid-Connected Inverters:Examination and Suppression

机译:单相并网逆变器的电流谐波:检查和抑制

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摘要

Environmental conditions and operational modes may significantly impact the distortion level of the injected current from single-phase grid-connected inverter systems, such as photovoltaic (PV) inverters, which may operate in cloudy days with a maximum power point tracking, in a non-unity power factor, or in the low voltage ride through mode with reactive current injection. In this paper, the mechanism of the harmonic current injection from grid-connected single-phase inverter systems is thus explored, and the analysis is conducted on single-phase PV systems. In particular, the analysis is focused on the impacts of the power factor and the feed-in grid current level on the quality of the feed-in grid current from single-phase inverters. As a consequence, an internal model principle based high performance current control solution is tailor-made and developed for single-phase grid-connected systems to produce high quality currents in different operation conditions, where a design procedure is also provided. The developed current controller in this paper can achieve a minimum steady-state error while maintaining a relatively fast transient response, and also being feasible in other single-phase applications as a promising harmonic mitigation solution. Experiments on single-phase grid-connected systems have verified the correctness of the relevant analysis and also the effectiveness of the tailor-made control solution in terms of good harmonic mitigation.
机译:环境条件和操作模式可能会严重影响来自单相并网逆变器系统(例如光伏(PV)逆变器)的注入电流的失真水平,该逆变器系统可能会在阴天下以最大功率点跟踪的方式运行,单位功率因数,或在无功电流注入的低压穿越模式下。本文探讨了并网单相逆变器系统注入谐波电流的机理,并对单相光伏系统进行了分析。特别地,分析集中在功率因数和馈入电网电流水平对单相逆变器馈入电网电流质量的影响上。因此,针对单相并网系统量身定制并开发了基于内部模型原理的高性能电流控制解决方案,以在不同的工作条件下产生高质量的电流,并提供了设计步骤。本文开发的电流控制器可以在保持相对快速的瞬态响应的同时实现最小的稳态误差,并且在其他单相应用中作为有希望的谐波缓解解决方案也是可行的。在单相并网系统上进行的实验已经验证了相关分析的正确性,并且从良好的谐波抑制角度来看,量身定制的控制解决方案也是有效的。

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