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Reliability evaluation of restructured power systems using a novel optimal power-flow-based approach

机译:使用基于最优潮流的新型方法对重组电力系统进行可靠性评估

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摘要

Power system planning and operation has been considerably affected by restructuring of power systems and high penetration of renewable energy resources. In the new environment, customers are at the centre of attention and their concerns need to be addressed properly. The conventional techniques are not usually able to address both segregation of power system components and uncertainty of renewable energy resources. A novel technique is proposed in this study to determine load point reliability in restructured power systems considering the effect of renewable generators. This technique is based on modified optimal power flow and represents generation and transmission system with their equivalent multistate models and investigates the effect of each one on the load point reliability, separately. Furthermore, this approach remarkably relieves the reliability evaluation process, especially when loads and generations are subject to changes in the power system. The proposed method can assist the planners in reaching an optimal load allocation plan by providing valuable information. The proposed approach is applied to the Roy Billinton test system to illustrate the applications and advantages of the new approach.
机译:电力系统的重组和可再生能源的高普及率极大地影响了电力系统的规划和运行。在新环境中,客户是关注的中心,需要正确解决他们的担忧。传统技术通常不能同时解决电力系统组件的隔离和可再生能源的不确定性问题。考虑到可再生发电机的影响,本研究提出了一种新技术来确定重组电力系统中的负荷点可靠性。该技术基于修改后的最佳潮流,并用等效的多状态模型表示发电和输电系统,并分别研究了每个对负荷点可靠性的影响。此外,这种方法显着减轻了可靠性评估过程,尤其是当负荷和发电量受到电力系统变化的影响时。所提出的方法可以通过提供有价值的信息来帮助计划者达成最佳的负荷分配计划。所提出的方法应用于Roy Billinton测试系统,以说明新方法的应用和优点。

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