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首页> 外文期刊>IEEE Transactions on Power Systems >Dynamic Transmission Capability Calculation Using Integrated Analysis Tools and Intelligent Systems
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Dynamic Transmission Capability Calculation Using Integrated Analysis Tools and Intelligent Systems

机译:使用集成分析工具和智能系统的动态传输能力计算

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摘要

This paper presents a methodology to calculate the transmission capability between two areas in a power system, considering both static and dynamic security assessment. An optimal power flow (OPF) algorithm is used to compute the transmission capability from the static point of view. The dynamic security assessment of the operating point obtained from the OPF is then evaluated. Transient, voltage, and small-signal stability assessment are considered. If any dynamic security criterion is violated, additional constraints are added to the original OPF formulation, and a new and secure transmission limit is calculated. These new constraints can be very simple, such as to limit the transmitted power, or more elaborated, based on some rules obtained from an intelligent system. The intelligent system adopted is a fuzzy inference system (FIS) that drives the redispatch of the active power generation. The FIS output is used to formulate the new constraints to the OPF. In addition to the OPF, the proposed methodology makes use of other power systems analysis tools, such as full time-domain simulation, fast simulation, and modal analysis. The methodology was implemented in a computational platform that integrates all these tools in a single framework. The results for two test systems have shown the potential benefits of the proposed methodology and the importance of considering different dynamic aspects in transmission capability calculation.
机译:本文提出了一种在考虑静态和动态安全评估的情况下计算电力系统两个区域之间的传输能力的方法。从静态的角度来看,最佳功率流(OPF)算法用于计算传输能力。然后评估从OPF获得的工作点的动态安全评估。考虑了瞬态,电压和小信号稳定性评估。如果违反了任何动态安全标准,则将附加约束添加到原始OPF公式中,并计算新的安全传输限制。这些新的约束条件可能非常简单,例如基于从智能系统获得的一些规则来限制发射功率,或者更加详尽。所采用的智能系统是模糊推理系统(FIS),它可以驱动有功功率的重新分配。 FIS输出用于制定OPF的新约束。除OPF之外,所提出的方法还利用了其他电力系统分析工具,例如全时域仿真,快速仿真和模态分析。该方法是在将所有这些工具集成到一个框架中的计算平台中实现的。两个测试系统的结果表明了所提出方法的潜在优势,以及在传输能力计算中考虑不同动态方面的重要性。

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