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Min-max long run marginal cost to allocate transmission tariffs for transmission users

机译:为传输用户分配传输费率的最小-最大长期边际成本

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摘要

The dispersion and volatility of transmission tariffs can provide an unsafe environment for generation investors in electrical systems, which are constantly growing. Dispersion and volatility occur, for example, in Brazil, where the Long Run Marginal Costs (LRMC) method is applied to calculate transmission tariffs. To solve this problem, this paper proposes a new Transmission Tariff Computation (TTC) approach based on the LRMC method and the min-max optimization technique. The proposed method uses the LRMC approach and the min-max optimization technique to seek less-dispersed transmission tariffs. The proposed modified LRMC method can be employed to optimize tariffs for generators and loads jointly or separately. This choice should be based on the network topology. The results are presented for a 6-bus and the IEEE 118-bus systems. The modified LRMC method is compared with the traditional LRMC method, currently in use in Brazil, and the classical Pro rata technique. Finally, some conclusions are presented.
机译:输电费率的分散性和波动性可能为不断增长的电气系统的发电投资者提供不安全的环境。例如,分散和波动发生在巴西,在该国,采用了长期边际成本(LRMC)方法来计算传输费率。为了解决这个问题,本文提出了一种新的基于LRMC方法和最小-最大优化技术的传输费率计算(TTC)方法。所提出的方法使用LRMC方法和最小最大优化技术来寻求分散程度较小的传输费率。提出的改进的LRMC方法可用于联合或单独优化发电机和负载的电价。该选择应基于网络拓扑。给出了6总线和IEEE 118总线系统的结果。修改后的LRMC方法与巴西目前使用的传统LRMC方法以及经典的Pro rata技术进行了比较。最后,提出了一些结论。

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