基于风险的准稳态交直流系统预防控制与应急控制协调研究

Jin Liu, Yanbo Chen, Q. Zhou, M. Lei, Binjun Yan, Xin Liu
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引用次数: 0

摘要

现代电力系统正日益向大型交直流混合系统发展,其运行方式也越来越复杂。偶尔的事故可能会导致过载问题、电压问题和级联故障。这些问题可能会破坏系统的稳定性。因此,在系统正常状态下,通过安全分析来研究系统的状态转换及其对系统的危害是十分重要的。此外,采取一定的控制措施来降低系统的风险,如预防和应急控制的协调,对系统的安全性和经济性都具有重要意义。在此前提下,本文提出了一种基于风险的准稳态交直流系统预防控制与应急控制协调的双层优化模型。通过引入连续可导函数,将传统模型中的不可导约束替换为连续可导约束。该方法可以大大提高模型的计算效率。根据两层优化模型的特点,采用黄金分割法求解第一层优化问题,采用有功无功交替法求解第二层优化问题。最后,通过仿真算例验证了所提方法的有效性。
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Risk-Based Coordination Research on Prevention Control and Emergency Control of Quasi-Steady State AC-DC System
Modern power system is becoming increasingly larger AC-DC hybrid system, and its operating mode is more and more complex. Occasional incidents may cause overload problems, voltage problems, and cascading failures. These problems may damage the system stability. Therefore, in the normal state of the system, it is important to study the state transition and its harm to the system through security analysis. Besides, adopting certain control measures to reduce the risk of the system, such as the coordination of prevention and emergency control, is of great significance to both the safety and the economy of the system. In this premise, this paper proposes a risk-based two-layer optimization model for coordination on prevention control and emergency control of quasi-steady state AC-DC system. By introducing a continuous derivable function, the non-derivable constraints in the traditional model are replaced by continuous derivable constraints. The method can greatly improve the computational efficiency of the model. According to the characteristic of the two-layer optimization model, the first layer optimization problem is solved by the golden section method, and the second layer optimization problem is solved by the active and reactive power alternating approach method. Finally, the effectiveness of the proposed method is verified with simulation example.
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