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Order reduction and dynamic performance of hydropower system with surge tank for grid-connected operation

机译:电流罐水电系统进行水电系统的顺序降低和动态性能。

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This paper aims to study the order reduction and dynamic performance of hydropower system with surge tank (HSST) for grid-connected operation. Firstly, for the hydropower system, the basic equations are presented, and the overall transfer function is derived. Then, a novel order reduction method for high order dynamic system is proposed to study the dynamic performance. The low order equivalent systems under different-scaled power grids are obtained based on order reduction method. Finally, the dynamic performance of hydropower system is studied. The time domain formula for the dynamic response of unit frequency is derived and verified. The results indicate that the overall transfer function for the HSST for grid-connected operation is a ninth-order linear dynamic system. Dominant poles and dominant zeros are the basis of the novel order reduction method. The low order equivalent system is a fourth-order linear dynamic system, which can be analytically solved and represent the dynamic performance of original system. The time domain formulas for the dynamic response of unit frequency are reasonable and have a high precision. The power grid has an obvious effect on the dynamic performance. A larger scale grid leads to a hydropower system with better dynamic performance.
机译:本文旨在研究水电系统用电涌罐(HSST)进行水电系统的顺序降低和动态性能。首先,对于水电系统,提出了基本方程,并导出了整体传递函数。然后,提出了一种用于高阶动态系统的新订单减少方法来研究动态性能。基于顺序减少方法获得不同缩放电网下的低阶等效系统。最后,研究了水电系统的动态性能。派生和验证单位频率动态响应的时域公式。结果表明,网格连接操作的HSST的整体传递函数是第九阶线性动态系统。主导极点和主导零是新颖秩序减少方法的基础。低阶等效系统是四阶线性动态系统,可以在分析解决并表示原始系统的动态性能。用于单位频率的动态响应的时域公式是合理的并且具有高精度。电网对动态性能有明显影响。更大的秤电网导致水电系统具有更好的动态性能。

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