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A Simulation Study of OBDD-Based Proper Splitting Strategies for Power Systems Under Consideration of Transient Stability

机译:考虑暂态稳定的基于OBDD的电力系统正确分配策略的仿真研究

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ystem splitting, also called controlled system islanding, can effectively prevent blackouts. Following the OBDD-based three-phase method given in [3] for proper splitting strategies, which satisfy necessary steady-state constraints, this paper studies the feasibility of the proper splitting strategies by means of power system transient simulations on the IEEE 118-bus system. Simulation results show that a considerable proportion of proper splitting strategies can successfully split the power system into stable islands. Furthermore, considering a general knowledge that a controlled power system can easily maintain its stability after a small disturbance, this paper presents "threshold value constraint" to restrict the degrees of the disturbances caused by proper splitting strategies. An approach is proposed to select threshold values for the constraint. Further simulation results show that by checking the constraint for proper splitting strategies, feasible splitting strategies can be found, which can suc cessfully split the system into islands satisfying transient stability constraints.
机译:系统分裂,也称为受控系统孤岛,可以有效防止停电。继[3]中给出的基于OBDD的三相方法用于适当的分裂策略,该方法满足必要的稳态约束之后,本文通过在IEEE 118总线上进行电力系统暂态仿真,研究了适当的分裂策略的可行性系统。仿真结果表明,相当一部分适当的拆分策略可以成功地将电力系统拆分为稳定的孤岛。此外,考虑到一般的知识,即受控制的电力系统在发生小干扰后可以轻松地保持其稳定性,因此本文提出了一种“阈值约束”来限制由适当的分割策略所引起的干扰程度。提出了一种为约束选择阈值的方法。进一步的仿真结果表明,通过检查约束条件来确定合适的分裂策略,可以找到可行的分裂策略,从而可以将系统成功地分裂成满足暂态稳定约束的孤岛。

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