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Considerations on Self-Healing and Assisted-Healing for power transmission systems in operation centers

机译:运营中心输电系统自愈和辅助修复的考虑

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One of the most challenging proposals about the smart grid concept is the deployment of features that enable a power grid to reconfigure itself, isolating defects and recovering through alternative available routes after disturbances. This ability is known as Self-Healing, a concept most widespread in distribution power systems. In transmission power systems, however, there is a substantially lower amount of research. Some authors says the actual transmission is inherently self-healing since its topology is meshed designed, which ensures redundancy for equipment trips, preventing a load outage. Nevertheless, automatic transmission systems reconfiguration presents high improvement potential in the restoring process, in terms of security and agility. Under this scenario, this paper sets the framework for a self-healing system to perform in the transmission system. In this framework, are considered the main technical requirements, concerns, points of attention and inherent issues of transmission operation process. The Assisted-Healing concept will also be considered for such circumstances in which the Self-Healing is not convenient or not possible to be fully performed. The main aim is support operators to deal better with stressful decisions related to the restoration process after power systems disturbances, reducing assets and load outages periods.
机译:关于智能电网概念的最具挑战性的建议之一是部署功能,这些功能可使电网重新配置自身,隔离缺陷并在发生干扰后通过备用可用路径进行恢复。此功能称为自修复​​,这是在配电电源系统中最广泛使用的概念。然而,在发射功率系统中,研究量很少。一些作者说,实际传输本质上是自愈的,因为其拓扑结构是网状设计的,从而确保了设备跳闸的冗余性,防止了负载中断。然而,就安全性和敏捷性而言,自动变速箱系统的重新配置在恢复过程中具有很高的改进潜力。在这种情况下,本文为传输系统中执行的自愈系统设置了框架。在此框架中,考虑了变速器操作过程的主要技术要求,关注点,注意点和内在问题。在不方便或无法完全执行自我修复的情况下,也会考虑使用“辅助修复”概念。其主要目的是支持运营商更好地处理与电力系统故障后恢复过程有关的压力决定,从而减少资产和减少负载中断时间。

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