论文标题
通过临时无线通信进行主动分销网络的网络物理相互依存的恢复计划
Cyber-physical interdependent restoration scheduling for active distribution network via ad hoc wireless communication
论文作者
论文摘要
本文提出了用于主动分配网络(ADN)的疾病后网络物理相互依存的恢复计划(CPIRS)框架,其中考虑了网络和物理网络的同时损害。在灾难后立即建立网络网络以支持ADN修复,因此首次利用了临时无线设备对设备(D2D)通信。在网络物理相互作用下,可以有效地协调维修和操作人员调度,遥控网络重新配置以及使用DER的系统操作。可再生能源资源(RES)的不确定产出由预算受限的多面体不确定性集表示。通过在析取表达式上实施线性化技术,制定了单层混合构成线性编程(MILP)两阶段鲁棒优化模型,并随后由定制的列和构造生成(C&CG)算法解决。 IEEE 123节点分布系统的数值结果证明了拟议的CPIRS ADN方法的有效性和优势。
This paper proposes a post-disaster cyber-physical interdependent restoration scheduling (CPIRS) framework for active distribution networks (ADN) where the simultaneous damages on cyber and physical networks are considered. The ad hoc wireless device-to-device (D2D) communication is leveraged, for the first time, to establish cyber networks instantly after the disaster to support ADN restoration. The repair and operation crew dispatching, the remote-controlled network reconfiguration and the system operation with DERs can be effectively coordinated under the cyber-physical interactions. The uncertain outputs of renewable energy resources (RESs) are represented by budget-constrained polyhedral uncertainty sets. Through implementing linearization techniques on disjunctive expressions, a monolithic mixed-integer linear programming (MILP) based two-stage robust optimization model is formulated and subsequently solved by a customized column-and-constraint generation (C&CG) algorithm. Numerical results on the IEEE 123-node distribution system demonstrate the effectiveness and superiorities of the proposed CPIRS method for ADN.