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Assessment of MW-mile method for pricing transmission services: a negative flow-sharing approach

机译:评估传输服务定价的英里英里数方法:负流量共享方法

摘要

A negative flow-sharing approach to allocate transmission transaction charges among users of transmission services is proposed. The approach uses the properties of the MW-mile method but takes into account the economic benefits of both trading parties by analysing their shares in negative power flow or counterflow. This approach is incorporated with the justified distribution factor for power flow tracing purposes. Two case studies based on a 5-bus system and an IEEE 14-bus system are used to illustrate the proposed approach. The results show that the proposed approach has merit over the traditional MW-mile approaches in the context of revenue reconciliation of transmission services, regardless of transaction arrangements and locations. The profit-sharing concept introduced here provides a better economic signal in allocating charges for counterflows, which could benefit trading parties. 1 Introduction The electric utility industry in many countries has been deregulated to further increase its competitiveness and efficiency and to reduce the cost of power generation, transmission and distribution. With deregulation, generation, transmission and distribution would be in different companies and their interactions would be based on purely commercial bases. As a result, a transmission company plays a major role in determining the charges for wheeling transactions. In the past, wheeling transactions have accounted for a small portion of the overall transmission network capacity usage. However, recent trends towards unbundling of electric services have resulted in renewed interest in pricing of transmission services, particularly as it relates to wheeling transactions [1]. Many methods have been used or proposed to evaluate the costs of transmission transactions or the so-called wheeling transactions. Most methods attempt at least two basic measurements: the amount of transmission capacity used and the per-unit cost of transmission capacity [2]. These methods can be classified into one of these categories: embedded cost and incremental or marginal cost. These categories have been discussed by some authors [2–5] and show their ability to provide reasonable economic costs. Among these methods, the embedded cost methods are
机译:提出了一种负流量共享方法,用于在传输服务的用户之间分配传输事务费。该方法利用了MW-mile方法的特性,但通过分析双方在负潮流或逆流中的份额来考虑双方的经济利益。此方法与合理的分配因子结合在一起,可用于潮流跟踪。基于5总线系统和IEEE 14总线系统的两个案例研究用于说明所提出的方法。结果表明,无论交易安排和地点如何,在传输服务的收入核对的背景下,该方法均优于传统的MW-mile方法。此处引入的利润共享概念在分配逆流费用方面提供了更好的经济信号,这可以使交易各方受益。 1简介对许多国家的电力工业进行了放松管制,以进一步提高其竞争力和效率,并降低发电,输电和配电的成本。放松管制后,发电,输电和配电将在不同的公司中进行,它们之间的相互作用将基于纯粹的商业基础。结果,变速箱公司在确定转账费用方面起着重要作用。过去,轮转交易仅占整个传输网络容量使用量的一小部分。但是,近来电力服务捆绑化的趋势导致人们对输电服务的定价重新产生了兴趣,特别是与轮式交易有关[1]。已经使用或提议了许多方法来评估传输交易或所谓的转账交易的成本。大多数方法都尝试至少两个基本度量:传输容量的使用量和传输容量的单位成本[2]。这些方法可以分为以下类别之一:嵌入式成本和增量或边际成本。一些作者已经讨论了这些类别[2-5],并显示了它们提供合理经济成本的能力。在这些方法中,嵌入式成本法是

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