针对多种新能源发电的联合优化调度问题,以风力发电、光伏发电、光热发电、火力发电构成多源发电系统(Muti-Source Power System, MSPS),提出了一种基于鲁棒随机优化理论的MSPS两阶段随机优化调度方法。首先,介绍了MSPS基本结构,并建立...针对多种新能源发电的联合优化调度问题,以风力发电、光伏发电、光热发电、火力发电构成多源发电系统(Muti-Source Power System, MSPS),提出了一种基于鲁棒随机优化理论的MSPS两阶段随机优化调度方法。首先,介绍了MSPS基本结构,并建立了MSPS出力模型。然后,提出了基于区间法及概率距离的场景生成及削减框架以处理风光出力的随机性,在此基础上建立了MSPS两阶段优化调度模型。同时,采用鲁棒随机优化理论将含有随机变量的约束条件转化为可以反映系统管理者承担系统风险态度的约束条件,建立了含双鲁棒系数的MSPS随机优化调度模型。通过仿真验证该模型可以降低系统的缺电风险,并能够为风险态度不同的系统管理者提供优化调度决策依据。展开更多
For the low utilization rate of photovoltaic power generation,taking a new energy power system constisting of concentrating solar power(CSP),photovoltaic power(PP)and battery energy storage system as an example,a mult...For the low utilization rate of photovoltaic power generation,taking a new energy power system constisting of concentrating solar power(CSP),photovoltaic power(PP)and battery energy storage system as an example,a multi-objective optimization scheduling strategy considering energy storage participation is proposed.Firstly,the new energy power system model is established,and the PP scenario generation and reduction frame based on the autoregressive moving average model and Kantorovich-distance is proposed.Then,based on the optimization goal of the system operation cost minimization and the PP output power consumption maximization,the multi-objective optimization scheduling model is established.Finally,the simulation results show that introducing energy storage into the system can effectively reduce the system operation cost and improve the utilization efficiency of PP.展开更多
文摘针对多种新能源发电的联合优化调度问题,以风力发电、光伏发电、光热发电、火力发电构成多源发电系统(Muti-Source Power System, MSPS),提出了一种基于鲁棒随机优化理论的MSPS两阶段随机优化调度方法。首先,介绍了MSPS基本结构,并建立了MSPS出力模型。然后,提出了基于区间法及概率距离的场景生成及削减框架以处理风光出力的随机性,在此基础上建立了MSPS两阶段优化调度模型。同时,采用鲁棒随机优化理论将含有随机变量的约束条件转化为可以反映系统管理者承担系统风险态度的约束条件,建立了含双鲁棒系数的MSPS随机优化调度模型。通过仿真验证该模型可以降低系统的缺电风险,并能够为风险态度不同的系统管理者提供优化调度决策依据。
基金Science and Technology Project of State Grid Corporation of China(No.SGGSKY00FJJS1800140)。
文摘For the low utilization rate of photovoltaic power generation,taking a new energy power system constisting of concentrating solar power(CSP),photovoltaic power(PP)and battery energy storage system as an example,a multi-objective optimization scheduling strategy considering energy storage participation is proposed.Firstly,the new energy power system model is established,and the PP scenario generation and reduction frame based on the autoregressive moving average model and Kantorovich-distance is proposed.Then,based on the optimization goal of the system operation cost minimization and the PP output power consumption maximization,the multi-objective optimization scheduling model is established.Finally,the simulation results show that introducing energy storage into the system can effectively reduce the system operation cost and improve the utilization efficiency of PP.