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A sustainable hybrid/ off grid power generation systems suitable for a remote coastal area in Oman

机译:适用于阿曼偏远沿海地区的可持续混合/离网发电系统

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This paper provides Energy-Economic Optimization for a hybrid/ off grid power generation systems using reliable renewable energies suitable for a remote coastal area, Musandam Peninsula situated in most northerly point of Oman. There is a diesel power plant located in Khasab, one of the four wilayyats of Musandam Peninsula which serves the required electricity for the region as it is an off-grid area. Renewable energies offer an alternative solution for fossil fuels. Oman is looking forward for green energies evidently along with rest of the world due to obvious reasons like increase in carbon deposits, global warming and pollution etc. An effort has been made to investigate whether the power generated by renewable energies especially by solar & wind energies available in Musandam Peninsula can replace the situation of power generation by fossil fuels. Tidal power is not considered in comparison with wind energy and solar energy, as it is not a big sustainable resource due to environment impacts & exergy availability etc. at present. Three options and their comparison have been provided with the help of `Homer software' simulation results. Simulation results based on Energy-Economic Optimization show, case studies and their comparison for three models: First model (Diesel power system), second model (Solar PV power system) and the third model (PV-wind hybrid power system). Cycle charging strategy is considered in all models. Simulation results are showing that cost of energy (COE) is lowest for PV-Wind hybrid power system. We conclude that a properly planned hybrid system combining renewable energies solar energy & wind energy (i.e. PV-wind hybrid power system) joined with conventional energy system will reduce the overall cost along with many benefits like carbon reduction etc. It is suggested in this paper to connect PV-wind hybrid power system with the existing diesel power station at Khasab and utilize the existing distribution system to meet th- growing energy demand. The excess power generated can be stored in storage batteries as a backup or this power can be distributed to the nearby off-grid areas.
机译:本文为混合/离网发电系统提供了能源经济优化,该系统使用可靠的可再生能源,适用于偏远的沿海地区,即阿曼最北端的穆桑丹半岛。海桑卜(Musandam Peninsula)的四个湿地之一位于海萨卜(Khasab),有一个柴油发电厂,该地区为离网地区,可为该地区提供所需的电力。可再生能源为化石燃料提供了替代解决方案。由于碳沉积增加,全球变暖和污染等明显原因,阿曼显然希望与世界其他地区一起使用绿色能源。已努力研究可再生能源,特别是太阳能和风能是否产生了电能Musandam半岛上可用的天然气可以替代化石燃料发电。与目前的风能和太阳能相比,没有考虑潮汐能,因为目前由于环境影响和火用度等原因,潮汐能不是可持续的大资源。借助“荷马软件”仿真结果,提供了三个选项及其比较。基于能源经济优化的仿真结果显示了三种模型的案例研究及其比较:第一种模型(柴油发电系统),第二种模型(太阳能光伏发电系统)和第三种模型(光伏-风能混合发电系统)。在所有模型中都考虑了循环充电策略。仿真结果表明,PV-Wind混合动力系统的能源成本(COE)最低。我们得出的结论是,将可再生能源太阳能和风能(即PV-风能混合动力系统)与常规能源系统结合使用的合理计划的混合系统将降低总体成本,并带来许多好处,例如减少碳排放等。将光伏-风电混合动力系统与海塞卜现有的柴油发电站连接起来,并利用现有的配电系统来满足不断增长的能源需求。产生的多余电能可以作为备用电池存储在蓄电池中,也可以分配到附近的离网区域。

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