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Vulnerability assessment of the power grid against progressing wildfires

机译:针对不断发展的野火的电网脆弱性评估

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摘要

Wildfires are common in many forest and grassland ecosystems. Power transmission lines are vulnerable to wildfires in their vicinity, mainly due to increased conductor temperatures as a result of heat released by the fire. This may damage the conductor and lead to violation of safety clearances between conductor and ground. To address the situation, a power system operator may dynamically alter the ratings of the lines in the affected areas to reduce the current flowing through them, thereby assisting with conductor cooling. A unified model is proposed here that allows for dynamically changing the thermal ratings of conductors in the vicinity of a wildfire. The proposed model incorporates the radiative and convective heat released due to a progressing wildfire into the conductor thermal rating calculation in order to derive the updated conductor rating. Case studies are presented to show the effects of a progressing wildfire on a power system. It is shown that dynamically changing the ratings of power lines changes the flow of power through the network, moving the system towards a sub-optimal operating point. Under heavy loading conditions, this may even lead to imbalance between load and generation, therefore forcing involuntary load shedding to avoid system collapse. (C) 2015 Elsevier Ltd. All rights reserved.
机译:野火在许多森林和草原生态系统中都很常见。输电线路易受附近野火的影响,主要是由于火灾释放的热量导致导体温度升高。这可能会损坏导体,并导致违反导体与地面之间的安全距离。为了解决这种情况,电力系统操作员可以动态更改受影响区域中的线路额定值,以减少流经它们的电流,从而协助导体冷却。这里提出了一个统一的模型,该模型允许动态改变野火附近导体的热额定值。所提出的模型将由于野火的进展而释放的辐射和对流热量纳入导体热额定值计算中,以得出更新的导体额定值。案例研究显示了不断发生的野火对电力系统的影响。结果表明,动态改变电力线的额定值会改变通过网络的电力流,从而使系统朝次佳的工作点发展。在重负载条件下,这甚至可能导致负载与发电之间的不平衡,因此迫使非自愿减少负载以避免系统崩溃。 (C)2015 Elsevier Ltd.保留所有权利。

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