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Evaluation of Input Low Frequency Current Ripple Performance in Front-end Converter with Single Phase Inverter Load

机译:具有单相逆变器负载的前端转换器中输入低频电流纹波性能的评估

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Due to non-linear time-varying characteristic of a single phase DC/AC inverter, its front-end DC/DC converter tends to draw an AC ripple current at twice the output frequency, which may cause interaction issues (e.g. stability problem and input ripple current limit in distributed generation systems such as nor-grid-connected wind power system). A novel method is proposed for analyzing the behavior of low frequency input current ripple. This method is based on back current gain A{sub}i/(s)(input current to output current) model of the DC/DC converter. The theoretic model with different control schemes is verified in Saber environment. It is shown that the average current mode control strategy is more effective compared with voltage mode control and open loop control schemes. Design principles are presented based on A{sub}i(s) as guide lines. Simulation and experimental results with open loop, single voltage loop, and average current mode control are provided for verification.
机译:由于单相DC / AC逆变器的非线性时变特性,其前端DC / DC转换器倾向于绘制输出频率的两倍的AC纹波电流,这可能导致交互问题(例如稳定性问题和输入诸如NOR-GRID-CONNED的风电系统的分布式发电系统中的纹波电流限制)。提出了一种用于分析低频输入电流纹波的行为的新方法。该方法基于DC / DC转换器的后电流增益A {Sub} I /(S)(输入电流到输出电流)模型。具有不同控制方案的理论模型在Saber环境中验证。结果表明,与电压模式控制和开环控制方案相比,平均电流模式控制策略更有效。基于{sub} i(s)作为指导行来呈现设计原则。提供了采用开环,单电压环路和平均电流模式控制的仿真和实验结果进行验证。

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