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Case Study Examples of Interoperable Ethernet Communications within Distribution, Transmission, and Wide-Area Control Systems

机译:配电,传输和广域控制系统中可互操作的以太网通信的案例研究示例

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While special protection systems (SPSs) often shed load, recent sophisticated remedial action schemes (RASs) reduce or terminate generation output during an emergency condition. Under certain load conditions, generation newly added to previously balanced transmission grids creates system conditions that violate accepted reliability criteria. At Southern California Edison (SCE), RAS systems are implemented to ensure reliable power system performance following outages on a transmission grid network. They include fast, automatic control actions to mitigate thermal overloads and system instability upon the loss of one or more transmission lines. With these automatic protection features, RAS systems are used in place of expensive alternative measures, which include reconductoring transmission lines, building new lines, and/or adding new transformers. Testing at SCE demonstrates the successful use of IEC 61850 GOOSE (Generic Object-Oriented Substation Event) messages over a distance up to 720 kilometers to collect analysis and arming data and transfer status and control indications. Complete detection, alarming, calculation, and remediation are completed in well under the 50-millisecond benchmark. Using standardized IEC 61850 GOOSE methods avoids the customization required to implement individual local RAS communications systems, allows centralized coordination of arming, disarming, and system testing, and simplifies the coordination of system maintenance. Reliability improves with capabilities to monitor end-to-end grid parameters and quickly respond to abnormal conditions. These methods of mitigation are intended to be used throughout the SCE area of operation as well as at all interties to neighboring utilities to facilitate dynamic load shedding/generation tripping and improved load management. SPSs and RASs must be put in place to protect existing systems that are called upon to serve new generation and load, are intertied with-n-n weak systems, or have geographical characteristics that reduce stability. Once protected, the automatic load and generation control ensures stability while improving production and reliability. Once these are in place, wide-area monitoring and control are safely added to replace state estimation with real-time state measurement and management.
机译:虽然特殊保护系统(SPS)经常会减轻负载,但最近的复杂补救措施方案(RAS)会在紧急情况下减少或终止发电量。在某些负载条件下,新添加到先前平衡的传输网格中的发电会创建违反公认的可靠性标准的系统条件。在南加州爱迪生(SCE),实现了RAS系统,以确保在输电网网格中断后,电力系统具有可靠的性能。它们包括快速,自动的控制措施,以减轻一条或多条传输线丢失时的热过载和系统不稳定。具有这些自动保护功能,可以使用RAS系统代替昂贵的替代措施,包括重新传输传输线,建造新线路和/或添加新变压器。在SCE进行的测试表明,在长达720公里的距离内成功使用了IEC 61850 GOOSE(面向对象的通用变电站事件)消息,以收集分析和布防数据以及传输状态和控制指示。在50毫秒的基准测试之下,完整的检测,报警,计算和补救措施均已完成。使用标准化的IEC 61850 GOOSE方法可以避免实施单个本地RAS通信系统所需的自定义,可以进行布防,撤防和系统测试的集中协调,并简化系统维护的协调。监视端到端网格参数并快速响应异常情况的能力提高了可靠性。这些缓解方法旨在在SCE的整个运营区域以及与相邻公用事业的所有联系中使用,以促进动态减负荷/发电跳闸和改善负荷管理。 SPS和RAS必须到位,以保护被要求为新一代和负荷服务的现有系统,与n-n个弱系统交织或具有降低稳定性的地理特征。一旦受到保护,自动的负载和发电控制就可以确保稳定性,同时提高生产效率和可靠性。一旦这些就绪,就可以安全地添加广域监视和控制,以实时状态测量和管理来代替状态估计。

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