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Contingency Based Congestion Management and Cost Minimization Using Bee Colony Optimization Technique

机译:基于抗议者的拥塞管理和使用蜜蜂殖民地优化技术的成本最小化

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Unexpected contingency occurrence in a power system network can lead to high current flow in the system. This has made the system to be in a stressed condition which causes congestion to the system, while instability can be the next unpredictable incident. High current flow may also impose high fuel cost of the generators. Thus, congestion needs to be managed properly in order to reduce the undesired current flow in the transmission line for maintaining system security. This paper presents contingency based congestion management and cost minimization using bee colony optimization technique. In this study, bee colony optimization technique is applied to optimize the current flow in the system such that system security is preserved; considering transmission lines as the control variables. N-1 contingency is considered as the forecasted event, implemented offline so that the performance of the system can be evaluated. Cost minimization is also conducted by controlling the transmission constraints in the system. Validation through the IEEE 30-reliability test system and 6-Bus test system are conducted to simulate the scenarios.
机译:电力系统网络中的意外应急发生可能导致系统中的高电流。这使得该系统处于强调状态,导致系统拥塞,而不稳定可以是下一个不可预测的事件。高电流也可能施加发电机的高燃料成本。因此,需要正确管理拥塞,以减少传输线中的不期望的电流,以维持系统安全性。本文介绍了基于抗议者的拥堵管理和使用蜂菌落优化技术的成本最小化。在本研究中,蜂菌落优化技术应用于优化系统中的电流,使得系统安全保存;考虑传输线作为控制变量。 N-1应急被认为是预测事件,实施离线,以便评估系统的性能。还通过控制系统中的传输约束来进行成本最小化。通过IEEE 30可靠性测试系统和6总线测试系统进行验证以模拟场景。

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