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A Calculation Model of Maximum Power Receiving Capacity Considering Multi-DC Power Regulation and Security Constraints

机译:考虑多直流功率调节和安全约束的最大受电能力计算模型

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摘要

Due to environmental protection requirements and government policies, local power plants in load centers are gradually shut down and the proportion of power receiving increases. Thus, research on the maximum power receiving capacity is of significance. But how to coordinate units and multi-DC power in calculation, while take the security and economy into consideration, poses challenges. An optimization model of maximum power receiving capacity calculation is proposed in this paper, considering multi-DC power regulation and security constraints. DC power flow equations and power generation scale limit around multi-DC landing points are used as constraints for security of receiving-end power system. Unit commitment and multi-DC power regulation are coordinated as decision variables. The model gives decisions for a sequence of periods, and maximizes overall power receiving capacity of multiple operation modes. The model is designed as a problem of Mixed Integer Linear Programming (MILP), to meet accuracy and performance requirements. Finally, IEEE 14 test case is conducted to verify its correctness and effectiveness. The maximum power receiving capacity is obtained under a variety of operation modes. And PSD-BPA power flow results also support this conclusion.
机译:由于环保要求和政府政策的原因,负荷中心的当地发电厂逐渐关闭,受电比例增加。因此,研究最大受电容量具有重要意义。但是,如何在计算中协调单位和多直流电源,同时又要考虑安全性和经济性,就构成了挑战。提出了一种考虑多直流功率调节和安全约束的最大受电容量计算优化模型。多直流着陆点周围的直流潮流方程和发电规模限制被用作接收端电力系统安全性的约束。单位承诺和多DC功率调节作为决策变量进行协调。该模型给出一系列周期的决策,并最大化多种操作模式的整体受电能力。该模型被设计为混合整数线性规划(MILP)的问题,以满足准确性和性能要求。最后,进行IEEE 14测试用例以验证其正确性和有效性。在各种操作模式下都可获得最大功率接收容量。 PSD-BPA潮流结果也支持这一结论。

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