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An efficient decomposition method for integrated dispatch of generation and load

机译:一种生成和负载综合调度的有效分解方法

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Summary form only given: In response to the computational challenges produced by the integrated dispatch of generation and load (IDGL), this paper proposes a novel and efficient decomposition method. The IDGL is formulated using the mixed-integer quadratic constrained programming (MIQCP) method. To efficiently solve this complex optimization problem, the nodal equivalent load shifting bidding curve (NELSBC) is proposed to represent the aggregated response characteristics of customers at a node. The IDGL is subsequently decomposed into a two-level optimization problem. At the upper level, grid operators optimize load shifting schedules based on the NELSBC of each node. Transmission losses are explicitly incorporated into the model to coordinate them with generating costs and load shifting costs. At the bottom level, customer load adjustments are optimized at individual nodes given the nodal load shifting requirement imposed by the grid operators. The key advantage of the proposed method is that the load shifting among different nodes can be coordinated via NELSBCs without iterations. The proposed decomposition method significantly improves the efficiency of the IDGL. Parallel computing techniques are utilized to accelerate the computations. Using numerical studies of IEEE 30-bus, 118-bus, and practically sized 300-bus systems, this study demonstrates that accurate and efficient IDGL scheduling results, which consider the nonlinear impact of transmission losses, can be achieved.
机译:摘要表格仅给出:响应于通过发电和负载的综合调度(IDGL)产生的计算挑战,本文提出了一种新颖有效的分解方法。使用混合整数二次约束编程(MIQCP)方法配制IDGL。为了有效地解决该复杂的优化问题,提出了节点的Nodal等效负载转移竞标曲线(NELSBC)以表示节点的客户的聚合响应特性。随后将IDGL分解为两级优化问题。在上层,网格运营商基于每个节点的NELSBC优化负载转换时间表。传输损耗明确地结合到模型中,以协调它们以产生成本和负载移位成本。在底部层面,考虑到网格运营商施加的节点负载转换要求,在各个节点上优化客户负载调整。所提出的方法的关键优点是,可以通过NELSBC在没有迭代的情况下协调不同节点之间的负载移位。所提出的分解方法显着提高了IDGL的效率。使用并行计算技术来加速计算。使用IEEE 30-BUS,118总线和实际大小的300总线系统的数值研究,本研究表明,可以实现准确高效的IDGL调度结果,这可以实现考虑传输损耗的非线性影响。

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