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A novel planning method of self-recovery enhancement for transmission network with the integration of large scale wind power

机译:大规模风电整合的输电网络自恢复增强规划新方法

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摘要

Planning issue of transmission network should take it into account that the ability to stand possible disturbances and recover from severe fault, when large-scale wind power integrated. Self-recovery capability index (SRCI) is defined representing the maximum load that can be supplied considering certain restriction when fault occurs in a certain time period that system moves back to normal state. The robustness of network can thus be evaluated by this index. The demand for self-recovery indeed requires a strong grid structure and that energy storage equipment and real-time control system be configured. Besides, constraints of grid and devices must be followed and the N-1 reliability principle. A multi-objective planning model is proposed and its overall object is to derive a maximum SRCI and wind power transmission capability but with the lowest investment cost and best economic benefits. Two sub problems of network planning and the configuration of devices are decoupled and layered, which forms a bi-level planning model. Optimization algorithm and iterative calculation between the two sub problems are used to solve the planning model. The feasibility of the proposed method is verified through the simulation.
机译:输电网络的规划问题应考虑到在整合大规模风电时能够承受可能的干扰并从严重故障中恢复的能力。定义了自我恢复能力指数(SRCI),表示在系统恢复到正常状态的特定时间段内发生故障时,考虑到某些限制,可以提供的最大负载。网络的健壮性因此可以通过该指标来评估。对自我恢复的需求确实需要强大的网格结构,并且必须配置能量存储设备和实时控制系统。此外,必须遵守电网和设备的约束条件以及N-1可靠性原则。提出了一种多目标规划模型,其总体目标是获得最大的SRCI和风电传输能力,但具有最低的投资成本和最佳的经济效益。网络规划和设备配置的两个子问题被解耦和分层,从而形成了双层规划模型。两个子问题之间的优化算法和迭代计算被用于求解规划模型。通过仿真验证了该方法的可行性。

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