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Energy generation cost in multi-energy systems; an application to a non-merchant energy hub in supplying price responsive loads

机译:多能源系统的发电成本;在非商户能源枢纽中提供价格敏感负载的应用

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Integration of different energy carriers as well as the large scale energy storages and converters, allows the energy hubs (EH) to supply loads at a lower cost. This cost however can be conceptualized as the EH generation cost when playing the role of a generation unit. This reduction in EH generation cost can directly affect the behavior of the price responsive loads which enables the customers to maintain their benefit function. In this paper therefore, a new EH operation optimization model is proposed, which determines the optimum response of the responsive loads to the associated EH generation costs, in order to minimize the total operation cost of the EH as well as the customers' payments. To this end, a general analytical framework is proposed to determine the EH generation cost per each energy type at the demand side. Also an integrated responsive load model is applied to simulate the responsive load modifications. This study demonstrates how the EH employment can reduce the energy prices at the demand side, and how this price reduction would change the responsiveness of elastic loads. Further, to evaluate the performance of the proposed model, a comprehensive case study has been conducted. (C) 2018 Elsevier Ltd. All rights reserved.
机译:集成不同的能量载体以及大规模的能量存储和转换器,使能量中心(EH)能够以较低的成本提供负载。但是,在扮演发电单位的角色时,可以将此成本概念化为EH发电成本。 EH发电成本的这种降低会直接影响价格响应负载的行为,从而使客户能够维持其收益功能。因此,在本文中,提出了一个新的EH运行优化模型,该模型确定响应负载对相关EH发电成本的最佳响应,以最小化EH的总运行成本以及客户的付款。为此,提出了一个通用的分析框架来确定需求侧每种能源类型的EH发电成本。还集成了响应负载模型来模拟响应负载修改。这项研究表明,EH就业如何能够降低需求侧的能源价格,以及这种价格下降如何改变弹性负载的响应能力。此外,为了评估所提出模型的性能,已经进行了全面的案例研究。 (C)2018 Elsevier Ltd.保留所有权利。

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