智能电网负载平衡技术通过同步开关/联络线/电线配置

I. Jiang, Gi-Joon Nam, Hua-Yu Chang, S. Nassif, J. Hayes
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引用次数: 12

摘要

快速变化的配电系统要求具有动态的系统配置能力,以经济的方式应对多变的用电需求。配电系统的负载平衡是智能电网实现向终端用户可靠供电的关键技术。本文是国内首次采用开关重配置、附加联络线和升级线同时进行负载均衡的工作,而现有的工作只采用三种技术中的一种来配置配电系统。我们观察到新的负载平衡问题引起了一个新的挑战,即动态拓扑旋转,这是现有解决方案无法处理的。为了克服这一挑战,我们首先考虑双向潮流,并将负载平衡问题表述为混合整数二次约束规划(MIQCQP)。为了降低计算复杂度,进一步将其转化为不损失最优性的混合整数线性规划(MILP)。实验结果表明,在实际的配电网络中,我们的方法产生的最优解不太可能在特设启发式方法中找到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart grid load balancing techniques via simultaneous switch/tie-line/wire configurations
Fast changing power distribution systems request a dynamic system configuration capability of reacting to volatile consumption demands in an economical way. Load balancing in power distribution systems is an essential technique for smart grid that enables reliable electricity delivery to end customers. This paper is the first work focusing on load balancing using switch reconfiguration, tie-line addition, and wire upgrade simultaneously, while existing works adopt only one of the three techniques to configure the power distribution system. We observe that the new load balancing problem induces a new challenge, dynamic topology rotation, which cannot be handled by existing solutions. To overcome this challenge, we first consider bidirectional power flows and formulate the load balancing problem as a mixed-integer quadratically constrained quadratic program (MIQCQP). To reduce the computational complexity, it is further transformed into a mixed-integer linear program (MILP) without loss of optimality. Experimental results show that, on real power distribution networks, our approach produces optimal solutions that are unlikely to be found in ad-hoc heuristics methods.
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