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Transmission cost-sharing in multi-supplier power grid

机译:多供应商电网中的传输成本分摊

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Ever-increasing energy consumption and growing penetration of renewable energy sources stimulate the development of new power grid models and architectures. Since the decentralization of power grids causes the unreliability of power supply, it is crucial to switch to a production-oriented consumption in order to provide the stability of a grid. Power flows in a grid are distributed according to Kirchhoff's laws and use multiple parallel lines in circuitous routes. Once the profile of energy injections and withdrawals is fixed, the values of load current flows can be defined over the network. Generally, it is not possible to directly determine the accordance between the energy contracts and the loop flows that contribute to the total congestion in network links. In this work, we describe a multi-supplier power grid model. Then we formulate a nonlinear minimization problem which solution gives a flow distribution fulfilling Kirchhoff's laws. Finally, we introduce a cost-sharing technique for finding individual transmission costs.
机译:不断增长的能源消耗和可再生能源的日益普及刺激了新的电网模型和架构的发展。由于电网的分散会导致电源供应不可靠,因此至关重要的是,为了确保电网的稳定性,必须切换到面向生产的消耗。电网中的功率流根据基尔霍夫定律进行分配,并在routes回路径中使用多条平行线。一旦能量注入和释放的曲线固定,就可以在网络上定义负载电流的值。通常,不可能直接确定导致网络链路中总拥塞的能量合同和环路流量之间的一致性。在这项工作中,我们描述了一个多供应商的电网模型。然后,我们提出了一个非线性最小化问题,该问题的解决方案给出了满足基尔霍夫定律的流量分布。最后,我们介绍了一种成本分摊技术,用于查找单个传输成本。

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