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Distributed generation and energy storage system planning for a distribution system operator

机译:配电系统运营商的分布式发电和储能系统规划

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The smart distribution system architecture provides value-based control techniques that facilitate bi-directional power flows and energy transactions. Although consensus and understanding continue to develop around peer-to-peer transactions, a distribution system operator aims to promote and enable interoperability among entities, particularly those who own distributed energy resources such as energy storage system (ESS) and distributed generation (DG). In this study, the authors address the optimal allocation of ESS and DG in the smart distribution system architecture, in order to help the integration of wind energy. The formulated objective is to minimise the sum of the annualised investment cost, the expected profit and the imbalance cost in the two-stage of power scheduling. The proposed model is verified on the modified IEEE 15-bus distribution radial system. The simulation results have verified the proposed planning approach. Also, results show that a more risk-seeking operation strategy is recommended if wind power penetration increases.
机译:智能配电系统架构提供了基于价值的控制技术,可促进双向潮流和能源交易。尽管围绕点对点交易继续形成共识和理解,但是配电系统运营商致力于促进并实现实体之间的互操作性,尤其是那些拥有分布式能源资源(例如储能系统(ESS)和分布式发电(DG))的实体之间。在这项研究中,作者致力于在智能配电系统架构中优化ESS和DG的分配,以帮助整合风能。制定的目标是使两阶段电力调度中的年化投资成本,预期利润和不平衡成本之和最小。在改进的IEEE 15总线分配径向系统上验证了所提出的模型。仿真结果验证了所提出的规划方法。此外,结果表明,如果增加风电渗透率,则建议采用更具风险寻找力的运营策略。

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