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Optimal operation strategy for multi-carrier energy systems including various energy converters by multi-objective information gap decision theory and enhanced directed search domain method

机译:多载波能量系统的最佳运行策略,包括各种能量转换器的多目标信息差距决策理论和增强的指示搜索域方法

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摘要

Multi-carrier energy systems can increase energy efficiency due to the ability of these systems to consider and optimize the interactions of various energy carriers. However, the operation of these systems is somehow different from the operation of conventional single-carrier energy systems. In this paper, a new operation strategy for multi-carrier energy systems including natural gas and electricity is proposed. Various energy converters, including conventional and renewable electricity generators, gas furnace, and combined heat and power generator, are modeled in the proposed strategy to supply different electric, heat, and gas loads in the output. The proposed operation strategy employs a multi-objective information gap decision theory approach to model the uncertainty sources of multi-carrier energy systems, such as the uncertainties of demand forecasts, wind power forecast, and photovoltaic power forecast. For solving the multi-objective optimization problem, based on information gap decision theory, for multi-carrier energy system operation, an enhanced directed search domain method is proposed as a new multi-objective optimization approach. The performance of the proposed multicarrier energy system operation optimization model and the proposed enhanced directed search domain solution method is investigated on the IEEE 118-bus test system by comparing with the other alternatives.
机译:由于这些系统考虑和优化各种能量载体的相互作用,多载体能量系统可以提高能量效率。然而,这些系统的操作以某种方式与传统单载波能量系统的操作不同。本文提出了一种新的多载能源系统的新操作策略,包括天然气和电力。各种能量转换器包括常规和可再生的发电机,燃气炉和组合的热量和发电机,以所提出的策略为模型,以供应不同的电气,热量和输出中的气体载荷。拟议的操作策略采用多目标信息差距决策理论方法来模拟多载波能源系统的不确定性来源,例如需求预测,风力预测和光伏电力预测的不确定性。为了解决多目标优化问题,基于信息差距决策理论,对于多载波能量系统操作,提出了增强的指向搜索域方法作为一种新的多目标优化方法。通过与其他替代方案进行比较,在IEEE 118-Bus测试系统上研究了所提出的多载波能量系统操作优化模型和所提升的增强的指向搜索域解决方案方法的性能。

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