首页> 外文会议>2012 IEEE Energy Conversion Congress and Exposition. >Evaluation of low frequency input current ripple in a non-isolated single phase photovoltaic grid-connected inverter with back current gain model
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Evaluation of low frequency input current ripple in a non-isolated single phase photovoltaic grid-connected inverter with back current gain model

机译:利用反向电流增益模型评估非隔离单相光伏并网逆变器中的低频输入电流纹波

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Due to power time-varying characteristic of a single phase photovoltaic (PV) grid-connected inverter in grid side, its front-end dc/dc converter tends to draw a large ac ripple current with double grid frequency, which would decrease maxim power point tracking performance of PV side. A novel method is proposed for the low frequency input current ripple analysis of a boost converter in a non-isolated single phase PV inverter, based on back current gain Ai(s) (input current to output current) model. Mathematical models with different control schemes are built and derived, which are verified in SABER environment. It is indicated and proved that average current mode control strategy is more effective than voltage mode control and open loop control methods. Design principles are also presented. Simulation and experimental results are provided for model verification. Bandwidth limitation is also discussed and improved with proposed PR controller with Ai(s) model.
机译:由于电网侧单相光伏(PV)并网逆变器的功率时变特性,其前端dc / dc转换器往往会以两倍的电网频率吸收较大的交流纹波电流,这会降低最大功率点光伏侧的跟踪性能。提出了一种基于反向电流增益Ai(s)(输入电流至输出电流)模型的非隔离单相光伏逆变器中升压转换器的低频输入电流纹波分析的新方法。建立并推导了具有不同控制方案的数学模型,并在SABER环境中对其进行了验证。结果表明,平均电流模式控制策略比电压模式控制和开环控制方法更有效。还介绍了设计原理。提供了仿真和实验结果以用于模型验证。还使用建议的带有Ai(s)模型的PR控制器来讨论和改善带宽限制。

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