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Mitigating substation demand fluctuations using decoupled price schemes for demand response

机译:减轻变电站的需求波动使用去耦价格方案进行需求响应

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In this paper, we propose a decoupled substation price model with separate charges for base energy production, up/down reserve usages and reserve usage variations. Using the decoupled price scheme, the flexible loads in the distribution system are scheduled to closely follow variations in renewable generation in order to mitigate demand fluctuations in substation. This reduces the need for reserve unit power production, thereby allowing transmission systems to operate at lower cost and higher efficiency. We formulate an optimization problem to determine the optimal scheduling of flexible loads subject to power balance, power flow and demand response constraints. The optimization problem is solvable by computationally efficient linear programming methods. Real-time and day-ahead models are considered. Numerical examples on a modified 13-node test feeder demonstrate the effectiveness of the proposed method.
机译:在本文中,我们提出了一种解耦的变电站价格模型,具有单独的基础能源生产费,上/下储备用法和储备使用变化。使用解耦的价格方案,分配系统中的柔性负载计划紧跟可再生生成的变化,以减轻变电站中的需求波动。这减少了对储备单元电力产生的需求,从而允许传输系统以较低的成本和更高的效率操作。我们制定了优化问题,以确定经过电力平衡,功率流量和需求响应约束的灵活负载的最佳调度。优化问题是通过计算上有效的线性规划方法来解决的。考虑了实时和前一天的模型。改性的13节点测试馈线上的数值示例证明了所提出的方法的有效性。

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