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Fuel cell integration with grid using voltage source converter and its control

机译:使用电压源转换器的燃料电池与电网集成及其控制

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摘要

Due to increased burden on the grid, voltage and frequency control becomes very difficult. Moreover, nonlinear domestic appliances are also contributing towards power quality problems related with voltage and current. To share the burden of grid and for increasing the power quality at the end users authors have proposed new topology comprising fuel cell along with voltage source converter (VSC) used as distribution static compensator (DSTATCOM) connected in shunt at point of common coupling of load and source. To control the VSC, forward backward least mean square (FBLMS) algorithm is used. In this algorithm, error between desired and estimated signal is calculated in both forward and backward directions. The average error is calculated based on forward path error. Further, the active weight components and the reactive weight components are used to calculate reference source current for gate pulse generation. The complete system is simulated and validated in the laboratory environment with one prototype, the results are satisfactory.
机译:由于电网负担增加,电压和频率控制变得非常困难。此外,非线性家用电器也导致与电压和电流有关的电能质量问题。为了分担电网的负担并提高最终用户的电能质量,作者提出了一种新的拓扑结构,其中包括燃料电池以及电压源转换器(VSC),用作在负载的公共耦合点并联连接的配电静态补偿器(DSTATCOM)。和来源。为了控制VSC,使用了前向后最小均方(FBLMS)算法。在该算法中,在正向和反向方向上都计算了期望信号和估计信号之间的误差。基于前向路径误差来计算平均误差。此外,有功权重分量和无功权重分量用于计算用于产生栅极脉冲的参考源电流。完整的系统在实验室环境中用一个原型进行了仿真和验证,结果令人满意。

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