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Smart Grid Topologies Paving the Way for an Urban Resilient Continuity Management

机译:智能电网拓扑为城市弹性连续性管理铺平道路

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The generation and supply of electricity is currently about to undergo a fundamental transition that includes extensive development of smart grids. Smart grids are huge and complex networks consisting of a vast number of devices and entities which are connected with each other. This opens new variations of disruption scenarios which can increase the vulnerability of a power distribution network. However, the network topology of a smart grid has significant effects on urban resilience particularly referring to the adequate provision of infrastructures. Thus, topology massively codetermines the degree of urban resilience, i.e. different topologies enable different strategies of power distribution. Therefore, this article introduces a concept of criticality adapted to a power system relying on an advanced metering infrastructure. The authors propose a two-stage operationalization of this concept that refers to the design phase of a smart grid and its operation mode, targeting at an urban resilient power flow during power shortage.
机译:当前,电力的产生和供应将经历一个基本的转变,其中包括智能电网的广泛发展。智能电网是一个庞大而复杂的网络,由相互连接的大量设备和实体组成。这带来了破坏情景的新变化,这可能会增加配电网络的脆弱性。但是,智能电网的网络拓扑结构对城市弹性具有重大影响,尤其是指提供充足的基础设施。因此,拓扑结构大规模地决定了城市的弹性程度,即不同的拓扑结构实现了不同的配电策略。因此,本文介绍了适用于依赖于高级计量基础结构的电力系统的临界度概念。作者提出了这一概念的两阶段操作,即智能电网的设计阶段及其运行模式,其目标是在电力短缺期间实现城市弹性潮流。

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