考虑用户和发电剖面的分布式配电系统自适应保护

C. Wahyudi, N. Hariyanto, R. Ganjavi
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引用次数: 6

摘要

分布式能源的渗透对配电保护系统有着重要的影响。短路时的电流流和负载流取决于der的运行状态、产生的功率、短路贡献以及用户负载。DER集成程度越高,维护DER、馈线和变电站保护的敏感性、选择性、快速响应和最佳可靠性就越具有挑战性。IEEE 34节点测试馈线通过增加光伏、风能和储能der来使用和扩展。消费者负载和DER的生成从静态值扩展到典型的负载和生成概况,其中检查了每日、每周和季节性模式。在没有DERs的情况下,选择性地计算保护装置的设置。采用PSA (Protection Security Assessment)方法,自动评估不同故障场景下保护装置的正确操作。采用三相和单相金属故障来验证保护系统的安全性。PSA重新评估了DER对保护选择性的贡献和影响。自适应规则应该通过修改保护设置或馈线自动化逻辑来修复已识别的不协调。本文采用自适应规则改进保护设置。提出了一种适用于高级分销管理系统(ADMS)的PSA方法和自适应规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Protection of Distribution Systems with DERs Considering Consumer and Generation Profiles
Distributed Energy Resources (DER) penetration has a significant impact on the distribution protection system. Current flow during short-circuit and load flow depend on DERs' operating state, generated power, and short-circuits contribution as well as consumer loads. The more DER integration leads to more challenge to maintaining DER, feeder, and substation protections sensitive, selective, with fast response, and optimum reliability. The IEEE 34 Node Test Feeder used and extended by addition of photovoltaic, wind, and energy storage DERs. Consumer loads and DER's generation were extended from static values to typical load and generation profiles, which examined daily, weekly, and seasonal patterns. Protection device settings were calculated selectively in the absence of DERs. Using the method of Protection Security Assessment (PSA), automatically evaluate the correct operation of protection devices in case of different fault scenarios. Three-phase and single-phase metallic faults are applied to validate protection system security. The PSA reassessed DER contribution and influence on protection selectivity. Adaptive rules should fix identified miss-coordinations by modifying protection settings or feeder automation logic. This paper applied adaptive rules to improve protection settings. The PSA method and adaptive rules assumed for implementation in an Advanced Distribution Management System (ADMS).
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