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Enhanced Long-Run Incremental Cost Pricing Considering the Impact of Network Contingencies

机译:考虑网络突发事件影响的增强的长期增量成本定价

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This paper improves the existing long-run incremental cost (LRIC) pricing which forms the basis for one of the two common charging methodologies that are to be adopted by the U.K.'s seven distribution network operators for charging customers connected at extra-high voltage (EHV) distribution networks from April 2012. The original model is expected to respect network security while evaluating charges based on the extent of the use of the network, which it achieves by reshaping components' capacity with their contingency factors into maximum available capacity. It then identifies the impact of a nodal injection on each component under normal conditions within the threshold of the maximum available capacity. The problem with the LRIC is that it assumes that the impact from a nodal injection is the same under both normal and contingent states, thus underestimating its impact under contingencies.
机译:本文改进了现有的长期增量成本(LRIC)定价,该定价构成了英国七家配电网络运营商将采用的两种常见充电方法之一,用于为超高压连接的客户充电(从2012年4月起开始使用EHV)。最初的模型应在尊重网络安全性的同时,根据网络的使用程度评估费用,这是通过将组件的容量和其应变因子重塑为最大可用容量来实现的。然后,在最大可用容量的阈值内,在正常条件下确定节点注入对每个组件的影响。 LRIC的问题在于,它假定节点注入的影响在正常状态和或有状态下都是相同的,因此低估了意外情况下的影响。

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