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The value of conservation voltage reduction to electricity security of supply

机译:节能降压对供电安全的价值

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In the specific event that there is not enough electricity being produced in the power market of Great Britain to meet demand, the system operator can use a set of mitigation tools to manage these supply shortfalls that are outside of normal operation of the market and that are used ahead of any controlled customer disconnections. Demand control is an emergency mitigation tool used by the system operator that instructs distribution network operators to implement voltage reduction across the electricity distribution system with the intent of achieving a reduction in customer's demand. The introduction of new low carbon generation and demand technologies in the electricity distribution networks, with fundamentally different technical and operating characteristics from the incumbent technologies, is likely to drive a dissimilar impact on the level of demand reduction that can be achieved through voltage reduction compared to those previously expected. Thus, there is a need to comprehensively understand the effectiveness of the voltage reduction in electricity distribution networks that can be realised through demand control events. The delivery of demand control can be achieved through conservation voltage reduction (CVR) techniques based on the principle of lowering the supply voltage to end-use consumers of electricity in order to reduce the energy consumption of some types of loads while maintaining customer service voltage within statutory limits. This paper presents a methodology to quantify and assess the value of CVR to security of supply of electricity systems. Specifically, it estimates the response of electricity demand to demand control events in the electricity distribution system to reduce customer's demand during periods of significantly low supply-demand margins. The methodology is applied to a network structure representative of the electricity distribution network of Great Britain and the value of CVR is estimated for individual distribution network feeders and for the distribution system over an annual load cycle. The analysis demonstrates that the response of demand to voltage reduction is relatively different from substation to substation, feeder to feeder and especially load to load. The CVR factor for the Great Britain electricity distribution network is assessed to vary on average from 0.81 in the summer season to 1.13 in the winter season. The CVR factors for the electricity distribution network of Great Britain are expressed in the form of a look up table to provide a simple framework for network operators to estimate the response of demand to voltage reduction/demand control events. (C) 2016 Elsevier B.V. All rights reserved.
机译:在特定情况下,英国的电力市场上生产的电力不足以满足需求,系统运营商可以使用一套缓解工具来管理这些超出市场正常运行的供应短缺情况。在任何受控的客户断开连接之前使用。需求控制是系统运营商使用的一种紧急缓解工具,该工具指示配电网络运营商在整个配电系统中实施降压,以期实现客户需求的减少。与配电技术相比,在配电网络中引入新的低碳发电和需求技术,其技术和运行特性与现有技术有根本不同,与通过降低电压可以实现的需求降低水平相比,可能会产生不同的影响。那些以前预期的。因此,需要全面理解可以通过需求控制事件实现的配电网络中的电压降低的有效性。需求控制的交付可通过基于以下原则的节能降压(CVR)技术实现:降低最终用户用电的电源电压,以减少某些类型负载的能耗,同时将客户服务电压保持在法定限制。本文提出了一种量化和评估CVR对电力系统供应安全的价值的方法。具体来说,它估计电力需求对配电系统中需求控制事件的响应,以在供需利润率非常低的时期内减少客户的需求。将该方法应用于代表英国配电网络的网络结构,并估算单个配电网馈线和年度负载周期内配电系统的CVR值。分析表明,变电站之间,变电站之间,馈线之间,特别是负载与负载之间,需求对电压降低的响应相对不同。据估计,英国配电网络的CVR系数平均从夏季的0.81到冬季的1.13不等。英国配电网络的CVR因子以查找表的形式表示,为网络运营商提供了一个简单的框架,以估算需求对电压降低/需求控制事件的响应。 (C)2016 Elsevier B.V.保留所有权利。

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