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首页> 外文期刊>International journal of electrical power and energy systems >Numerical methods for power flow analysis in DC networks: State of the art, methods and challenges
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Numerical methods for power flow analysis in DC networks: State of the art, methods and challenges

机译:直流网络中电力流分析的数值方法:现有技术,方法和挑战

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摘要

This study addresses the power-flow-analysis problem for direct-current (DC) grids from a numerical perspective. Classical and emerging algorithms for power flow solutions in DC networks such as Gauss-Seidel, successive approximations, Newton-Raphson, and Taylor-based methods are reviewed herein in detail by providing their mathematical derivations and algorithmic implementations. All these numerical methods can be applied to high-voltage DC and low-voltage DC networks irrespective of their topologies and the number of voltage-controlled nodes. The MATLAB programming environment is used to implement these power flow algorithms using DC networks with 6, 21, 33, and 69 nodes. The simulation results show that these power flow methods are equivalent in terms of voltage estimation and power losses and only differ from one another in terms of processing time.
机译:本研究解决了来自数值视角的直流(DC)网格的电力流分析问题。通过提供其数学推导和算法实现,详细介绍了DC网络中的功率流解决方案的经典和新兴算法,如高斯 - Seidel,连续近似,牛顿的方法,通过提供其数学推导和算法实现。无论其拓扑和电压控制节点的数量如何,所有这些数值方法都可以应用于高压DC和低压DC网络。 MATLAB编程环境用于使用具有6,21,33和69个节点的直流网络来实现这些功率流算法。仿真结果表明,在电压估计和功率损耗方面,这些功率流方法是等同的,并且在处理时间方面只有彼此不同。

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