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A load flow calculation method with optimal multipliers for integrated AC/DC power systems

机译:集成AC / DC电力系统的最优乘数潮流计算方法

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摘要

In this paper, the optimal multiplier technique widely used in the load flow calculation for AC power systems is extended to the integrated AC/DC power systems in detail and in depth. With the implementation of the optimal multiplier modification to the standard simultaneous method, the modified method is able to not only behave well for unsolvable cases by not diverging but also improve the convergence characteristics for solvable cases. To examine the effectiveness of the proposed approach, case studies based on the 22-bus integrated AC/DC power system are demonstrated. The performance of the simultaneous method with and without optimal multipliers for a variety of solvable and unsolvable cases is compared. It is also observed that the solution of the proposed method may oscillate because the optimal multiplier at some iteration is unreasonably large, which provides little assistance and even deteriorates the solution. For this reason, the proposed method is improved further by setting an upper bound on the optimal multiplier. Test results indicate that the improved method could get the faster and more robust performance, regardless of system solvability.
机译:在本文中,在交流电力系统潮流计算中广泛使用的最佳乘数技术在细节和深度上都扩展到了集成的交流/直流电力系统。通过对标准同时方法进行最佳乘数修改,修改后的方法不仅可以通过不发散而在不可解决的情况下表现良好,而且可以改善可解决情况的收敛性。为了检验所提出方法的有效性,演示了基于22总线集成式AC / DC电源系统的案例研究。比较了在各种可解决和不可解决的情况下有或没有最优乘数的同时方法的性能。还观察到,所提出的方法的解可能会振荡,因为在某些迭代中的最佳乘数过大,这几乎没有帮助,甚至使解变差。因此,通过在最佳乘数上设置上限来进一步改进提出的方法。测试结果表明,无论系统可解决性如何,改进的方法都能获得更快,更强大的性能。

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