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A novel multi-objective stochastic risk co-optimization model of a zero-carbon multi-energy system (ZCMES) incorporating energy storage aging model and integrated demand response

机译:零碳多能量系统(ZCMES)的新型多目标随机风险共同优化模型,其储能老化模型和综合需求响应

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To model a realistic and highly flexible zero-carbon multi-energy system (ZCMES), a novel modelling strategy for ZCMES incorporating energy storage aging influence and integrated demand response (IDR) is proposed. Firstly, an integrated clustering-scenario generation and reduction approach (IC-SGRA) is developed to quantify the datasets uncertainties while selecting a representative day for the model. Secondly, the model is formulated as a multi-objective optimization problem to evaluate the influence of decision-maker preference concerning investment cost and operation cost on the optimal planning, and then weighting sum method is adopted to solve the problem. Finally, a Markowitz portfolio risk theory approach is adopted to mitigate the risk associated with uncertainties during decision-making, then an illustrative case study is used to analyse the proposed model. The simulation results reveal that the energy storage is overdesigned when aging effects are not considered, and the proposed approach can reduce the investment cost and the operation cost by 10.86% and 80.66% respectively, while the overall expenditure is reduced by 23.09%. Moreover, it was observed that the optimal total economic cost is obtained when high preference is given to the operation expenditure by the decision-makers while an equal preference resulted in a 0.24% reduction in investment cost and a 0.49% increase in total expen-diture. Furthermore, the effect of BES lifetime and IDR load factors are also examined on ZCMES optimal planning. This study concluded that IDR is a promising strategy to encourage adopting zero-carbon policies flexibly and economically while choosing BES with high lifetime and tolerable capacity loss contribute to optimal planning.(c) 2021 Elsevier Ltd. All rights reserved.
机译:为了建模现实和高度灵活的零碳多能量系统(ZCMES),提出了一种具有能量存储老化影响和集成需求响应(IDR)的ZCMES的新型建模策略。首先,开发了一种集成的聚类场景生成和减少方法(IC-SGRA)以在为模型选择代表性日期时量化数据集不确定性。其次,该模型被制定为多目标优化问题,以评估决策者偏好对投资成本和运营成本对最优规划的影响,然后采用加权和方法来解决问题。最后,采用了Markowitz投资组合风险理论方法来减轻与决策期间与不确定性相关的风险,然后使用说明性案例研究来分析所提出的模型。仿真结果表明,当不考虑老化效应时,储能已经过度设计,并且所提出的方法可以将投资成本降低10.86%和80.66%,而整体支出减少了23.09%。此外,观察到,当决策者的运营支出给予运营支出时,获得最佳总经济成本,而平等的偏好导致投资成本降低0.24%,总净成量增加0.49% 。此外,还在ZCMES最佳规划上检查了BES LifeTime和IDR负载因子的影响。这项研究得出结论,IDR是一个有希望的策略,以鼓励灵活,经济地采用零碳政策,同时选择BES与高寿命和可容忍的容量损失有助于最佳规划。(c)2021 elestvier有限公司保留所有权利。

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