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Microgrid expansion through a compressed air assisted wind energy system

机译:通过压缩空气辅助风能系统扩展微电网

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In a traditional power distribution system, as the community expands, the system designer plans to upgrade the capacity of transmission line to the load center. However, integrating a distributed energy resource and distributed energy storage could be an alternative to decrease the microgrid's dependence on transmission line. In this paper, a compressed air assisted wind energy conversion system (CA-WECS) is introduced. The CAWECS provides both distributed energy resource and distributed energy storage to the microgrid. A stochastic programming framework is proposed to assist the decision among upgrading the transmission line, integrating the CAWECS or the combination of both. The optimal power capacity, and storage capacity of CA-WECS, as well as the capacity of transmission line to the microgrid are determined by solving the mixed integer linear program. A numerical example is investigated to evaluate the performance of the new system. The comparison result shows that integration of a CA-WECS can largely decrease the demand on the transmission line, thus the capacity of the transmission line is decreased from 1000kW to 750kW for the identical load pattern. The average power flow though point of common coupling is reduced by around 50%. The energy cost of the community is reduced by 18%.
机译:在传统的配电系统中,随着社区的扩展,系统设计人员计划升级到负载中心的输电线路的容量。但是,整合分布式能源和分布式能源存储可以作为减少微电网对传输线的依赖的替代方法。本文介绍了一种压缩空气辅助风能转换系统(CA-WECS)。 CAWECS为微电网提供分布式能源和分布式能源存储。提出了一种随机编程框架,以协助进行传输线升级,CAWECS集成或两者结合的决策。通过求解混合整数线性程序,可以确定CA-WECS的最佳功率容量,存储容量以及到微网的传输线容量。研究了一个数值示例,以评估新系统的性能。比较结果表明,CA-WECS的集成可以大大减少对传输线的需求,因此,对于相同的负载模式,传输线的容量将从1000kW降低到750kW。通过普通耦合点的平均功率流减少了约50%。社区的能源成本降低了18%。

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