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Reactive Power optimization of Distribution Network with Large-scale Underground Cables Considering Power Factor Constraints

机译:考虑功率因数约束的大型地下电缆配电网无功优化

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摘要

At present, capacitive reactive power surplus is becoming increasingly prominent at light load operation in large urban power grid, which hazards the safety and stability of grid. Based on this background, the reactive power optimization method of distribution network with large-scale underground cables is studied. Firstly, an integrated reactive power optimization model with reactor and capacitor is established, taken into consideration power factor constraints. The objective function of the model is to minimize the real power loss. The new constraints include power factor constraints of buses and size constraints of reactors. Then, an improved genetic algorithm is proposed to solve the model. The real power loss sensitivity with respect to reactive power compensation is applied to improve the mutation process. By coordinating the operating and values of capacitors and reactors, the optimized scheme can avoid reactive power reversal and power factor exceeding the limit in the distribution network with large-scale cables access. Finally, a typical high voltage distribution network is used as an example to verify the effectiveness of the model and algorithm.
机译:当前,在大型城市电网的轻载运行中,电容性无功剩余功率变得越来越突出,这危害了电网的安全性和稳定性。在此背景下,研究了大型地下电缆配电网的无功优化方法。首先,考虑了功率因数约束,建立了具有电抗器和电容器的集成无功优化模型。该模型的目标功能是使实际功率损耗最小。新的约束包括总线的功率因数约束和电抗器的尺寸约束。然后,提出了一种改进的遗传算法来求解该模型。相对于无功功率补偿的实际功率损耗敏感性被应用于改善突变过程。通过协调电容器和电抗器的工作和值,优化的方案可以避免无功功率反向和功率因数超过大规模电缆接入配电网中的限制。最后,以一个典型的高压配电网为例,验证了该模型和算法的有效性。

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