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Optimisation-based switch allocation to improve energy losses and service restoration in radial electrical distribution systems

机译:基于优化的开关分配可改善径向配电系统中的能量损耗和服务恢复

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This study presents a new methodology for the optimal allocation of switching devices in radial electrical distribution systems (EDSs). A specialised greedy randomised adaptive search procedure (GRASP) algorithm defines the location of a number of switching devices in order to simultaneously improve the following optimisation subproblems related to the use of the allocated switches: (i) the optimal reconfiguration of EDS and (ii) the optimal service restoration of EDS. Eventually, the objective function of the proposed switch allocation algorithm minimises the cost of the total expected energy not supplied, computed after deploying the service restoration, plus the cost of the total annual energy loss computed for every load level in a year, plus the investment costs associated with the number of installed switches. Both optimisation subproblems, i.e. the reconfiguration and the restoration of EDS, are represented by mixed-integer non-linear programming (MINLP) models and transformed into mixed-integer linear programming (MILP) models, using linearisation strategies. MILP models guarantee convergence to optimality by using convex optimisation techniques. Finally, all tests were carried out using a real 136-node distribution system, considering dispatchable and non-dispatchable distributed generation resources.
机译:这项研究提出了一种在径向配电系统(EDS)中优化分配开关设备的新方法。专门的贪婪随机自适应搜索过程(GRASP)算法定义了多个交换设备的位置,以便同时改善与分配的交换机的使用有关的以下优化子问题:(i)EDS的最佳重新配置,以及(ii) EDS的最佳服务恢复。最终,所提出的开关分配算法的目标函数将部署服务恢复后未提供的总预期能源成本最小化,再加上一年中针对每个负载水平计算出的年度总能源损耗成本,再加上投资与已安装的交换机数量相关的成本。这两个优化子问题,即EDS的重新配置和恢复,都由混合整数非线性规划(MINLP)模型表示,并使用线性化策略转换为混合整数线性规划(MILP)模型。 MILP模型通过使用凸优化技术来保证收敛到最优。最后,考虑到可调度和不可调度的分布式发电资源,使用真实的136节点配电系统进行了所有测试。

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