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Feasible synergy between hybrid solar PV and wind system for energy supply of a green building in Kota (India): A case study using iHOGA
Energy Conversion and Management ( IF 9.9 ) Pub Date : 2024-07-10 , DOI: 10.1016/j.enconman.2024.118783
Shibna Hussain , Santosh Kumar Sharma , Shiv Lal

This research article analyses the optimal feasible synergy options of renewable energy sources combined into a hybrid PV panel and wind energy power producing system to deliver green energy for the Renewable Energy Department building at Rajasthan Technical University Kota, India. The configuration of the modeled system is optimized to be estimated with improved hybrid optimization by genetic algorithm (iHOGA). This study generates operational conditions for this hybrid solar-wind energy system which simulates the energy usage process over one year. The optimal synergy configured between solar and wind hybrid systems provides peak-demand energy to the green office building with little surplus energy. The whole year’s production of energy was 6988 kWh and the energy used by the building was 6759 kWh. The energy loss estimated is 276 kWh/year. The CO mitigated by using the integrated renewable energy option is evaluated and observed at 5273.14 kg/year. The other pollutants like SO and NO are also being mitigated by 9601.512 kg/year and NO 32424.32 kg/year respectively.

中文翻译:


混合太阳能光伏和风能系统之间的可行协同作用,为印度科塔的绿色建筑提供能源:使用 iHOGA 进行案例研究



本文分析了可再生能源与混合光伏板和风能发电系统相结合的最佳可行协同方案,为印度拉贾斯坦技术大学科塔可再生能源系大楼提供绿色能源。建模系统的配置通过遗传算法(iHOGA)改进的混合优化进行优化估计。这项研究为这种太阳能-风能混合能源系统生成了运行条件,模拟了一年的能源使用过程。太阳能和风能混合系统之间配置的最佳协同作用为绿色办公楼提供了高峰需求的能源,几乎没有剩余能源。全年发电量6988千瓦时,建筑用电量6759千瓦时。预计能源损失为 276 kWh/年。通过使用综合可再生能源选项所减少的二氧化碳排放量经评估和观察为 5273.14 千克/年。 SO 和 NO 等其他污染物也分别减少了 9601.512 千克/年和 NO 32424.32 千克/年。
更新日期:2024-07-10
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