Hierarchical and Divisional Optimal Dispatching Strategy for Active Distribution Network based on Hybrid Particle Swarm Optimization

Zhao Jian, Z. Ning, Wang Lei, Liu Hao, Sun Qian
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Abstract

Randomness and uncertainty of the intermittent renewable energy introduces great challenge on energy management of distribution network, the active distribution network is an important technical to achieve plenty of renewable energy fully consumed, as well as other controllable resources. This paper describes a hierarchical and divisional framework of multi-source coordinated interactive dispatch for active distribution network. In the framework, a local optimization control algorithm of regional distribution network and a global optimization control strategy for active distribution network are proposed. The strategy maximizes the utilization of clean energy and utilizes the renewable energy locally meanwhile guaranteeing stable and optimal operation of active distribution network. Finally, the feasibility and effectiveness of the strategy proposed in this paper is verified through the numerical example.
基于混合粒子群优化的有源配电网分层分区优化调度策略
间歇性可再生能源的随机性和不确定性给配电网的能源管理带来了很大的挑战,主动配电网是实现可再生能源充分利用,以及其他可控资源的重要技术手段。提出了一种有源配电网多源协同交互调度的分层分层框架。在此框架下,提出了区域配电网的局部优化控制算法和有源配电网的全局优化控制策略。该策略最大限度地利用清洁能源,局部利用可再生能源,同时保证有功配电网的稳定优化运行。最后,通过数值算例验证了本文所提策略的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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