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Battery energy storage scheduling for optimal load variance minimization

机译:最佳负载方差最小化的电池储能调度

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Generation portfolio can be significantly altered due to the deployment of distributed energy resources (DER) in distribution networks and the concept of microgrid. Generally, distribution networks can operate in a more resilient and economic fashion through proper coordination of DER. However, due to the partially uncontrollable and stochastic nature of some DER, the variance of net load of distribution systems increases, which raises the operational cost and complicates operation for transmission companies. This motivates peak shaving and valley filling using energy storage units deployed in distribution systems. This paper aims at theoretical formulation of optimal load variance minimization, where the infinity norm of net load is minimized. Then, the problem is reformulated equivalently as a linear program. A case study is performed with capacity-limited battery energy storage model and the simplified power flow model of a radial distribution network. The influence of capacity limit and deployment location are studied.
机译:由于在分销网络中的分布式能源(Der)部署和微普林的概念,因此可以显着改变生成投资组合。通常,通过适当协调Der的分销网络可以以更具弹性和经济的方式运行。然而,由于某些DER的部分无法控制和随机性,分配系统的净负荷的变化增加,这提高了运营成本并使传输公司复杂化。这激励了使用分配系统中部署的储能单元填充峰剃刮和谷填充。本文旨在最佳负载方差最小化的理论配方,其中净负载的无限常态最小化。然后,问题与线性程序等效地重新重新重新格式化。用容量限制电池能量存储模型和径向分配网络的简化电流模型进行案例研究。研究了容量限制和部署位置的影响。

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