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Applications of Minimal Path Set and Dual Fault Tree Approach for Piecewise Reliability Evaluation of Large-scale Electrical Power Systems

机译:大型电力系统分段可靠性评估的最小路径集和双故障树方法的应用

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Reliability assessment techniques and programs handling is an important issue for both power systems planning and testing in existing power system configurations. The Assessment techniques are suitable for detecting weak points in the reliability assessment. The reliability study of bulk power systems indicates the ability of the composite generation and transmission system to satisfy the load demand at major load points. The major burden of the developed methods used is the computation time required to solve a large number of credible contingencies or outage states. This paper presents a novel approach capable of the reliability evaluation for real large-size networks using normal size computers. It calculates the reliability indices at individual load buses and reliability of the whole system. The effect of the loading factor between loads on reliability is also investigated. The proposed approach is expanded to calculate the reliability of composite generation and transmission system taking the following constraints into consideration: amount of reliability of system generation, amount of reliability of transmission lines, maximum system generation capacity, maximum transmission lines capacity and maximum connected load at each bus. The approach is based on the minimal path set and dual fault tree techniques. A new concept of "constant reliability region", which is utilized in the field of optimum operation of power networks, is introduced. A special program is developed for the proposed technique. The comparison between the proposed and the previous techniques confirms that the proposed method is more accurate and precise.
机译:可靠性评估技术和程序处理是现有电力系统配置中电源系统规划和测试的重要问题。评估技术适用于检测可靠性评估中的弱点。散装电力系统的可靠性研究表明了复合生成和传输系统在主要负载点满足负载需求的能力。所使用的发达方法的主要负担是解决大量可靠的突发事件或中断状态所需的计算时间。本文介绍了一种新的方法,可以使用正常尺寸计算机对真实大型网络的可靠性评估。它计算各个负载总线的可靠性指数和整个系统的可靠性。还研究了负载之间的负载对可靠性之间的影响。所提出的方法被扩展为计算复合生成和传输系统的可靠性考虑以下约束:系统生成的可靠性,传输线的可靠性,最大系统生成容量,最大传输线容量和最大连接负载每辆公共汽车。该方法基于最小路径集和双故障树技术。介绍了在电网最佳运行领域中使用的“恒定可靠性区域”的新概念。开发了一个特殊程序,用于提出的技术。所提出的和以前的技术之间的比较证实了所提出的方法更准确和精确。

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