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Margin and sensitivity methods for security analysis of electric power systems.

机译:电力系统安全分析的裕度和灵敏度方法。

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摘要

Reliable operation of large scale electric power networks requires that system voltages and currents stay within design limits. Operation beyond those limits can lead to equipment failures and blackouts. Security margins measure the amount by which system loads or power transfers can change before a security violation, such as an overloaded transmission line, is encountered.; This thesis shows how to efficiently compute security margins defined by limiting events and instabilities, and the sensitivity of those margins with respect to assumptions, system parameters, operating policy, and transactions. Security margins to voltage collapse blackouts, oscillatory instability, generator limits, voltage constraints and line overloads are considered. The usefulness of computing the sensitivities of these margins with respect to interarea transfers, loading parameters, generator dispatch, transmission line parameters, and VAR support is established for networks as large as 1500 buses.; The sensitivity formulas presented apply to a range of power system models. Conventional sensitivity formulas such as line distribution factors, outage distribution factors, participation factors and penalty factors are shown to be special cases of the general sensitivity formulas derived in this thesis. The sensitivity formulas readily accommodate sparse matrix techniques.; Margin sensitivity methods are shown to work effectively for avoiding voltage collapse blackouts caused by either saddle node bifurcation of equilibria or immediate instability due to generator reactive power limits. Extremely fast contingency analysis for voltage collapse can be implemented with margin sensitivity based rankings.; Interarea transfer can be limited by voltage limits, line limits, or voltage stability. The sensitivity formulas presented in this thesis apply to security margins defined by any limit criteria. A method to compute transfer margins by directly locating intermediate events reduces the total number of loadflow iterations required by each margin computation and provides sensitivity information at minimal additional cost. Estimates of the effect of simultaneous transfers on the transfer margins agree well with the exact computations for a network model derived from a portion of the U.S grid. The accuracy of the estimates over a useful range of conditions and the ease of obtaining the estimates suggest that the sensitivity computations will be of practical value.
机译:大规模电力网络的可靠运行要求系统电压和电流保持在设计极限之内。超出这些限制的操作可能导致设备故障和停电。安全裕度衡量在遇到安全违规(例如传输线过载)之前系统负载或功率传输可以改变的数量。本文说明如何有效地计算通过限制事件和不稳定性定义的安全裕度,以及这些裕度相对于假设,系统参数,操作策略和事务的敏感性。考虑到电压崩溃停电,振荡不稳定,发电机极限,电压约束和线路过载的安全裕度。对于多达1500条总线的网络,已经确定了计算这些余量对区域间传输,负载参数,发电机调度,传输线参数和VAR支持的敏感性的有用性。给出的灵敏度公式适用于一系列电力系统模型。常规的敏感度公式如线路分布因子,中断分布因子,参与因子和惩罚因子被证明是本文得出的一般敏感性公式的特例。灵敏度公式很容易适应稀疏矩阵技术。余量敏感度方法可有效避免因鞍形节点分叉或由于发电机无功功率限制而立即引起的不稳定性而导致的电压崩溃停电。可以使用基于裕度敏感度的排名对电压崩溃进行非常快速的偶发性分析。区域间传输可能会受到电压限制,线路限制或电压稳定性的限制。本文提出的敏感性公式适用于由任何限制标准定义的安全边际。通过直接定位中间事件来计算传输裕量的方法减少了每个裕量计算所需的潮流迭代总数,并以最小的额外成本提供了灵敏度信息。同步转移对转移余量的影响的估计与从美国电网的一部分得出的网络模型的精确计算非常吻合。在有用的条件范围内估算的准确性以及获得估算的难易程度表明灵敏度计算将具有实用价值。

著录项

  • 作者

    Greene, Scott L.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Electronics and Electrical.; Engineering System Science.; Energy.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 277 p.
  • 总页数 277
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;系统科学;能源与动力工程;
  • 关键词

  • 入库时间 2022-08-17 11:48:34

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