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Day-ahead optimal energy dispatch schedule for integrated energy system based on AC/DC interconnected infrastructure

机译:基于AC / DC互联基础设施的综合能源系统的前方最佳能量调度计划

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This study proposes a day-ahead optimal energy dispatch model for integrated energy system based on AC/DC interconnected infrastructure. In the infrastructure, micro-turbines turn high-frequency AC power into industrial-frequency AC power and incorporate it into the energy system's power system. Within the process, waste heat is sent into the waste heat boiler and lithium bromide chillier to interconnect with the heating and cooling systems. DC battery and photovoltaic generations connected with the energy system's power grid through the inverter are used as the flexible energy storage and power generation unit to build an autonomous integrated energy system based on AC/DC interconnection. In the optimisation model, the goal is set as system's lowest daily operation cost and lowest energy consumption. The constraints include system operation constraints and equipment constraints. Simulation results show that by performing the schedule made by the dispatch model, the operating efficiency of various types of AC/DC equipment in the energy system has been improved, energy waste scene has been reduced significantly and energy consumption in the energy system is reduced by 16% compared with other energy supply structure without AC/DC interconnected infrastructure under traditional schedule strategies.
机译:本研究提出了基于AC / DC互连基础设施的集成能量系统的前方最佳能源调度模型。在基础设施中,微型涡轮机将高频交流电源转换为工业频率交流电源,并将其整合到能量系统的电力系统中。在该过程中,将废热送入废热锅炉和溴化锂冷却器中以与加热和冷却系统互连。通过逆变器与能量系统电网连接的直流电池和光伏代码用作柔性储能和发电单元,基于AC / DC互连构建自主集成能量系统。在优化模型中,目标被设置为系统的最低日常运营成本和最低能耗。约束包括系统操作约束和设备约束。仿真结果表明,通过执行调度模型所取得的时间表,能量系统中各种类型的AC / DC设备的运行效率得到了改善,能量废物现场显着降低,能量系统中的能耗减少了16%与其他能源供应结构相比,在传统的时间表策略下没有AC / DC互连基础设施。

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