首页> 外文会议>ES2011;International conference on energy sustainability >MULTI OBJECTIVE OPTIMIZATION OF LIFECYCLE COST, UNMET LOAD, AND RENEWABLE ENERGY CAPACITY FOR AN EXPANSION OF EXISTING STANDALONE INTERNAL COMBUSTION GENERATOR (ICG) SYSTEMS
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MULTI OBJECTIVE OPTIMIZATION OF LIFECYCLE COST, UNMET LOAD, AND RENEWABLE ENERGY CAPACITY FOR AN EXPANSION OF EXISTING STANDALONE INTERNAL COMBUSTION GENERATOR (ICG) SYSTEMS

机译:扩展现有独立式内燃发电机(ICG)系统的生命周期成本,未满足负荷和可再生能源容量的多目标优化

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Expanding existing Internal Combustion Generator (ICG) systems by incorporating renewable energy sources is getting popular due to its potential to reduce the emission of Green House Gases (GHG) and fuel consumption. Designing such Hybrid Energy System (HES)s become challenging due to the seasonal variation of renewable energy sources resulting either poor reliability of power supply or higher expenditure, which makes it essential to optimize Levelized Energy Cost (LEC), unmet load fraction and renewable energy capacity at the early design stages. This study evaluates the results obtained through such optimization based on evolutionary algorithm. In order to accomplish this, mathematical modeling and simulation of a stand-alone HES was carried out along with the optimization. Obtained results shows that both wind and Solar PV (SPV) capacity is having a significant impact on LEC, unmet load fraction and fuel consumption.
机译:通过合并可再生能源来扩展现有的内燃发电机(ICG)系统正变得越来越受欢迎,因为它具有减少温室气体(GHG)排放和减少燃料消耗的潜力。由于可再生能源的季节性变化导致电源可靠性差或支出增加,因此设计此类混合能源系统(HES)变得具有挑战性,这使得优化平准化能源成本(LEC),未满足的负荷率和可再生能源变得至关重要。设计初期的能力。这项研究评估了基于进化算法通过这种优化获得的结果。为了做到这一点,对独立的HES进行了数学建模和仿真,并进行了优化。获得的结果表明,风能和太阳能PV(SPV)的容量都对LEC,未满足的负载比例和燃料消耗产生了重大影响。

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