A techno-enviro-economic framework for optimal operation of a battery-driven hybrid energy system with biomass: A risk-averse approach

IF 9.4 1区 工程技术 Q1 ENERGY & FUELS Energy Pub Date : 2025-04-01 Epub Date: 2025-02-25 DOI:10.1016/j.energy.2025.135273
Mehran Khodadadi, Alireza Askarzadeh
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Abstract

In power system, optimal operation of grid-connected hybrid energy systems (HESs) is a challenging issue which should be considered from technical, economic and environmental aspects. Load uncertainty is a key parameter which can significantly affect the result of the operation problem and from the operator's point of view, it is necessary to evaluate the operation risk and make the system robust against the increase of the load demand. This paper proposes a risk-averse-based framework for techno-enviro-economic operation of a grid-connected HES composed of photovoltaic (PV), biomass (as a dispatchable renewable resource) and battery (as a storage device). In the PV/biomass/battery HES, load uncertainty is modelled by information gap decision theory (IGDT) and a robust IGDT model is developed to identify the highest level of the uncertainty radius. In order to efficiently solve the operation problem, crow search algorithm (CSA) is utilized and since the performance of CSA is greatly influenced by a parameter, named awareness probability, the impact of using various patterns (constant, linear and nonlinear) is investigated on the operation results. Over the case study, it is observed that when there is no risk and emission cost is included in the objective function, the value of CO2 emission decreases around 19.6 %. Furthermore, with respect to the deviation factors of 0.1, 0.15 and 0.2, maximum value of the uncertainty radius is obtained 6.84 %, 10 % and 13.76 %, respectively.
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电池驱动的生物质混合能源系统最佳运行的技术-环境-经济框架:规避风险的方法
在电力系统中,并网混合能源系统的优化运行是一个具有挑战性的问题,需要从技术、经济和环境三个方面进行考虑。负荷不确定性是影响运行问题结果的关键参数,从操作者的角度出发,有必要评估运行风险,使系统在负荷需求增加时具有鲁棒性。本文提出了一个基于风险规避的由光伏(PV)、生物质(作为可调度的可再生资源)和电池(作为存储设备)组成的并网HES技术环境经济运行框架。在光伏/生物质/电池HES中,负载不确定性采用信息缺口决策理论(IGDT)建模,并建立了一个鲁棒的IGDT模型来识别不确定性半径的最高水平。为了有效地解决操作问题,利用乌鸦搜索算法(CSA),由于CSA的性能受感知概率参数的影响很大,因此研究了使用不同模式(常量、线性和非线性)对操作结果的影响。通过案例分析可以看出,当不存在风险且目标函数中包含排放成本时,CO2排放量的值减少了19.6%左右。在偏差系数为0.1、0.15和0.2的情况下,不确定半径的最大值分别为6.84%、10%和13.76%。
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来源期刊
Energy
Energy 工程技术-能源与燃料
CiteScore
15.30
自引率
14.40%
发文量
0
审稿时长
14.2 weeks
期刊介绍: Energy is a multidisciplinary, international journal that publishes research and analysis in the field of energy engineering. Our aim is to become a leading peer-reviewed platform and a trusted source of information for energy-related topics. The journal covers a range of areas including mechanical engineering, thermal sciences, and energy analysis. We are particularly interested in research on energy modelling, prediction, integrated energy systems, planning, and management. Additionally, we welcome papers on energy conservation, efficiency, biomass and bioenergy, renewable energy, electricity supply and demand, energy storage, buildings, and economic and policy issues. These topics should align with our broader multidisciplinary focus.
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