To utilize heat and electricity in a clean and integrated manner,a zero-carbon-emission micro Energy Internet(ZCE-MEI) architecture is proposed by incorporating non-supplementary fired compressed air energy storage(NS...To utilize heat and electricity in a clean and integrated manner,a zero-carbon-emission micro Energy Internet(ZCE-MEI) architecture is proposed by incorporating non-supplementary fired compressed air energy storage(NSF-CAES) hub.A typical ZCE-MEI combining power distribution network(PDN) and district heating network(DHN) with NSF-CAES is considered in this paper.NSF-CAES hub is formulated to take the thermal dynamic and pressure behavior into account to enhance dispatch flexibility.A modified Dist Flow model is utilized to allow several discrete and continuous reactive power compensators to maintain voltage quality of PDN.Optimal operation of the ZCE-MEI is firstly modeled as a mixed integer nonlinear programming(MINLP).Several transformations and simplifications are taken to convert the problem as a mixed integer linear programming(MILP)which can be effectively solved by CPLEX.A typical test system composed of a NSF-CAES hub,a 33-bus PDN,and an 8-node DHN is adopted to verify the effectiveness of the proposed ZCE-MEI in terms of reducing operation cost and wind curtailment.展开更多
针对分布式电源孤岛系统中储能装置对系统的稳定运行有很大影响,提出一种风电孤岛模式下混合储能调频调压的控制策略。混合储能装置选用互补性强的蓄电池和超级电容。根据二者的特性,同时考虑它们的荷电状态(state of charge,SOC),实时...针对分布式电源孤岛系统中储能装置对系统的稳定运行有很大影响,提出一种风电孤岛模式下混合储能调频调压的控制策略。混合储能装置选用互补性强的蓄电池和超级电容。根据二者的特性,同时考虑它们的荷电状态(state of charge,SOC),实时改变输出功率比例系数,使负载所需功率在二者中合理分配且避免其电量的过充和过放。采用改进下垂控制策略消除传统下垂控制导致的频率和电压偏差,提高系统稳定性。最后基于Matlab/Simulink搭建仿真模型,验证所提策略的有效性。展开更多
基金supported in part by the National Natural Science Foundation of China(No.51321005,No.51377092,No.51577163)Opening Foundation of the Qinghai Province Key Laboratory of Photovoltaic Power Generation and Grid-connected Technology
文摘To utilize heat and electricity in a clean and integrated manner,a zero-carbon-emission micro Energy Internet(ZCE-MEI) architecture is proposed by incorporating non-supplementary fired compressed air energy storage(NSF-CAES) hub.A typical ZCE-MEI combining power distribution network(PDN) and district heating network(DHN) with NSF-CAES is considered in this paper.NSF-CAES hub is formulated to take the thermal dynamic and pressure behavior into account to enhance dispatch flexibility.A modified Dist Flow model is utilized to allow several discrete and continuous reactive power compensators to maintain voltage quality of PDN.Optimal operation of the ZCE-MEI is firstly modeled as a mixed integer nonlinear programming(MINLP).Several transformations and simplifications are taken to convert the problem as a mixed integer linear programming(MILP)which can be effectively solved by CPLEX.A typical test system composed of a NSF-CAES hub,a 33-bus PDN,and an 8-node DHN is adopted to verify the effectiveness of the proposed ZCE-MEI in terms of reducing operation cost and wind curtailment.
文摘针对分布式电源孤岛系统中储能装置对系统的稳定运行有很大影响,提出一种风电孤岛模式下混合储能调频调压的控制策略。混合储能装置选用互补性强的蓄电池和超级电容。根据二者的特性,同时考虑它们的荷电状态(state of charge,SOC),实时改变输出功率比例系数,使负载所需功率在二者中合理分配且避免其电量的过充和过放。采用改进下垂控制策略消除传统下垂控制导致的频率和电压偏差,提高系统稳定性。最后基于Matlab/Simulink搭建仿真模型,验证所提策略的有效性。