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Stochastic optimal scheduling of distributed energy resources with renewables considering economic and environmental aspects

机译:考虑经济和环境因素的分布式能源与可再生能源的随机最优调度

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A distributed energy resource (DER) system is a multi-input and multi-output energy system consisting of small-scale technologies, which provide electricity and thermal energy close to end-users. In recent years, DER systems have attracted much interest as a promising opportunity with substantial economic and environmental benefits. To reduce energy costs and environmental impact of DER systems, daily operation scheduling is crucial, and presents significant challenges even more under energy demand and supply uncertainty in presence of renewables. The contribution of this paper is to provide a stochastic programming model for the optimal operation scheduling of a DER system with multiple energy devices including renewables, considering economic and environmental aspects. To model uncertain parameters of supply and demand side, 24-h scenarios are generated by using roulette wheel mechanism and Monte Carlo simulation method. A stochastic multi-objective linear programming problem is formulated to find the optimized operation strategies of the DER system to reduce the expected energy costs and CO2 emissions, while satisfying the time-varying user demand. By minimizing a weighted sum of the total energy cost and CO2 emissions, the problem is solved by using branch-and-cut. Numerical results show that the Pareto frontier provides good trade-off solutions for DER system operators based on economic and environmental priorities. The total daily energy cost and CO2 emissions under a stochastic approach result to be lower than those under a deterministic one. Moreover, the operation method provided is found to be efficient in reducing significantly energy costs and CO2 emissions of the DER system, as compared with conventional energy supply systems and combined heat and power systems. In addition, a sensitivity analysis is also carried out to investigate the impact of renewables penetration on the economic and environmental performances of the DER system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:分布式能源(DER)系统是由小规模技术组成的多输入多输出能源系统,可为最终用户提供电能和热能。近年来,DER系统作为具有巨大的经济和环境效益的有前途的机会吸引了很多兴趣。为了降低能源成本和DER系统对环境的影响,日常运行计划至关重要,并且在存在可再生能源的情况下,在能源需求和供应不确定性的情况下,挑战更加严峻。本文的贡献是为经济和环境方面的考虑,为具有多种能源设备(包括可再生能源)的DER系统的最佳运行调度提供了一种随机规划模型。为了模拟供需双方不确定的参数,使用轮盘赌轮机制和蒙特卡洛模拟方法生成了24小时情景。提出了一个随机的多目标线性规划问题,以找到DER系统的优化运行策略,以减少预期的能源成本和CO2排放,同时满足时变的用户需求。通过最小化总能源成本和CO2排放量的加权总和,可通过分支切割解决问题。数值结果表明,基于经济和环境优先事项,帕累托边界为DER系统运营商提供了良好的权衡解决方案。结果表明,采用随机方法的每日总能源成本和二氧化碳排放量要低于采用确定性方法的每日总能源成本和二氧化碳排放量。此外,与常规的能量供应系统以及热电联产系统相比,发现所提供的操作方法在降低DER系统的能源成本和二氧化碳排放方面有效。此外,还进行了敏感性分析,以调查可再生能源渗透对DER系统的经济和环境绩效的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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