一方面,为提高主动配电网供电恢复过程中的孤岛运行模式的供电可靠性,另一方面,为充分协调调压设备和网络重构以提高电能质量,本文综合考虑调压设备、微电网、网络重构等作用,建立基于混合整数线性规划(mixed integer linear programmin...一方面,为提高主动配电网供电恢复过程中的孤岛运行模式的供电可靠性,另一方面,为充分协调调压设备和网络重构以提高电能质量,本文综合考虑调压设备、微电网、网络重构等作用,建立基于混合整数线性规划(mixed integer linear programming,MILP)模型的主动配电网供电恢复模型。该模型以开关操作的动作成本、电压调节设备的调节成本、失负荷成本组成的总成本为目标,以线性化潮流约束、DG模型、ZIP负荷模型、电压调节设备模型等为约束条件,建立了主动配电网供电恢复优化的MILP模型。在53节点配电系统的仿真结果验证了电压调节设备控制和微电网对配电网供电恢复的改善作用。展开更多
We propose a restoration strategy using microgrids for restoring power supply to critical loads after an extreme event and thereby enhancing the resilience of the distribution power grid. The limited capacities of dis...We propose a restoration strategy using microgrids for restoring power supply to critical loads after an extreme event and thereby enhancing the resilience of the distribution power grid. The limited capacities of distributed generators(DGs) within the microgrids and those of intermittent energy sources such as wind and photovoltaic power are considered. An enhanced strategy model of the distribution network is established for maximizing the power supply to critical loads. Firstly, the importance of the load is quantified by using the analytic hierarchy process(AHP) and the model of the microgrid output is further improved. In the demand response mechanism, an interruptible load is used to suppress the fluctuation in the distributed power output. Secondly, piecewise linearization method is applied to address the power flow constraints. Then, the resilience enhancement model of the distribution network is transformed into a mixed integer quadratic programming problem. The CPLEX solver is adopted to solve the above problem on the MATLAB platform. Finally, the proposed method is verified by applying it to practical scenarios.展开更多
文摘一方面,为提高主动配电网供电恢复过程中的孤岛运行模式的供电可靠性,另一方面,为充分协调调压设备和网络重构以提高电能质量,本文综合考虑调压设备、微电网、网络重构等作用,建立基于混合整数线性规划(mixed integer linear programming,MILP)模型的主动配电网供电恢复模型。该模型以开关操作的动作成本、电压调节设备的调节成本、失负荷成本组成的总成本为目标,以线性化潮流约束、DG模型、ZIP负荷模型、电压调节设备模型等为约束条件,建立了主动配电网供电恢复优化的MILP模型。在53节点配电系统的仿真结果验证了电压调节设备控制和微电网对配电网供电恢复的改善作用。
基金supported by the State Grid Science & Technology Project (Grant No.17H300000437)
文摘We propose a restoration strategy using microgrids for restoring power supply to critical loads after an extreme event and thereby enhancing the resilience of the distribution power grid. The limited capacities of distributed generators(DGs) within the microgrids and those of intermittent energy sources such as wind and photovoltaic power are considered. An enhanced strategy model of the distribution network is established for maximizing the power supply to critical loads. Firstly, the importance of the load is quantified by using the analytic hierarchy process(AHP) and the model of the microgrid output is further improved. In the demand response mechanism, an interruptible load is used to suppress the fluctuation in the distributed power output. Secondly, piecewise linearization method is applied to address the power flow constraints. Then, the resilience enhancement model of the distribution network is transformed into a mixed integer quadratic programming problem. The CPLEX solver is adopted to solve the above problem on the MATLAB platform. Finally, the proposed method is verified by applying it to practical scenarios.