多时间尺度下有源配电网的协调优化调度

Xie Hua, T. Lulu, Z. Ning, Zhao Jian, Sun Qian
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引用次数: 6

摘要

近年来,可再生能源的大规模接入给有功配电网的能源管理和稳定运行带来了巨大的挑战。为充分利用大量可再生能源,在负荷预测和间歇性能源输出预测的基础上,建立了多时间尺度下的两阶段多源协调优化调度模型,包括日前调度模型和实时调度模型。优化调度模型的优化目标是通过控制储能和可控分布式发电(如柴油机和微型汽轮机),使有源配电网的运行成本最小化。基于日前调度的最优调度结果,实时调度处理了可再生能源和负荷的预测误差,并考虑了根据实现情景调整ESS和柴油机方案的成本。采用改进的粒子群算法(PSO)对模型进行求解。最后,通过仿真算例验证了所提策略的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordinated optimal dispatch for active distribution network under multi-time scales
Recently, large-scale renewable energy sources access to power system has brought a great challenge on the energy management and stability operation of active distribution network. To a two stage multi-source coordinated optimized dispatching model under multi-time scales is established, based on the load forecasts and intermittent energy output forecasts, to fully consume large amounts of renewable energy sources (RES), which consists of day-ahead dispatch model and real-time dispatch model. The optimization objective of the optimal dispatch model is to minimize the operation costs of active distribution network by controlling the energy storage and controllable distributed generation, such as the diesel engine and micro turbine (MT). Based on the optimal dispatch results in the day-ahead dispatch, the real-time dispatch deals with the forecast error of renewable energy and loads, considering the costs of adjusting the ESS and diesel engine plan based on the realized scenarios. An improved particle swarm optimization (PSO) algorithm is adopted to solve the models. Finally, the feasibility and effectiveness of the proposed strategy is verified through the simulation examples.
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