基于数据驱动的负荷曲线分割的无功优化

Yaqiong Li, Tongxun Wang, Zhanfeng Deng
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引用次数: 1

摘要

由于配电系统的运行受负荷波动特性的影响较大,为保证配电系统的安全和经济运行提供有效的策略,必须对一定时间段内的无功功率进行优化。在满足电压幅值限制等运行约束的前提下,提出了两种长期最小化网络损耗和无功补偿装置调整次数的方法。一种方法是对每个时间点独立进行优化。另一分段基于滤波信号计算方法将实测负荷曲线分成若干段,然后对各负荷段的无功功率调度进行优化。通过对改进后的IEEE 34总线系统的实例分析,发现负载曲线分段优化方法既能实现低损耗,又能实现低调整次数。并通过实验与其他方法进行了比较,验证了该方法的计算效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reactive Power Optimization based on Data-driven Load Curve Segmentation
Since the operation of distribution system is highly impacted by fluctuating characteristics of loads, reactive power optimization over a certain time period is essential to provide effective strategies to maintain the security and economic operation of distribution system. In this paper, two methods are proposed to minimize network losses and reactive power compensation device adjustment times for a long time horizons, while satisfying the operational constrains such as satisfying voltage magnitude limits. One method conducts optimization for each time point independently. The other first segments measured load curve into several sections based on a filtered signal calculation method, and then optimizes reactive power dispatch for each load section. Through a case study for a modified IEEE 34 bus system, the optimization method with load curve segmentation is found to be able to achieve both low losses and adjustment times. Furthermore, its computational efficiency is also verified through experiments compared with other methods.
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