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Design and implementation of an islanded hybrid microgrid system for a large resort center for Penang Island with the proper application of excess energy

机译:槟城岛大型度假中心岛立混合微电网系统的设计与实现,适当应用多余能量

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The energy demand is growing daily at an accelerated pace due to the internationalization and development of civilization. Yet proper economic utilization of additional energy generated by the Islanded Hybrid Microgrid System (IHMS) that was not consumed by the load is a major global challenge. To resolve the above-stated summons, this research focuses on a multi-optimal combination of IHMS for the Penang Hill Resort located on Penang Island, Malaysia, with effective use of redundant energy. To avail this excess energy efficiently, an electrical heater along with a storage tank has been designed concerning diversion load having proper energy management. Furthermore, the system design has adopted the HOMER Pro software for profitable and practical analysis. Alongside, MATLAB Simulink had stabilized the whole system by representing the values of 2068 and 19,072 kW that have been determined as the approximated peak and average load per day for the resort. Moreover, the optimized IHMS is comprehended of Photovoltaic (PV) cells, Diesel Generator, Wind Turbine, Battery, and Converter. Adjacent to this, the optimized system ensued in having a Net Present Cost (NPC) of $21.66 million, Renewable Fraction (RF) of 27.8%, Cost of Energy (COE) of $0.165/kWh, CO_2 of 1,735,836 kg/year, and excess energy of 517.29MWh per annum. Since the diesel generator lead system was included in the scheme, a COE of $0.217/kWh, CO_2 of 5,124,879 kg/year, and NPC of $23.25 million were attained. The amount of excess energy is effectively utilized with an electrical heater as a diversion load.
机译:由于文明的国际化和发展,能源需求在加速速度下越来越大。然而,由于负荷未被消耗的岛立混合微电网系统(IHM)产生的额外能源的经济利用是一个主要的全球挑战。为了解决上述召唤,本研究重点介绍了位于马来西亚槟城岛的槟城山度假村的IHMS多最优结合,有效地利用冗余能量。为了有效地利用这种多余的能量,设计了一种电加热器以及储罐的有关具有适当的能量管理的导流负荷。此外,系统设计采用了Homer Pro软件,以获得有利可图和实际的分析。除了旁边,Matlab Simulink通过代表2068和19,072 kW的值已经被确定为度假村每天的近似峰值和平均负荷的值来稳定整个系统。此外,优化的IHMS理解光伏(PV)电池,柴油发电机,风力涡轮机,电池和转换器。邻近这一点,优化的系统随着2166万美元的净目前(NPC),可再生分数(RF)为27.8%,能源成本为0.165 / kWh,Co_2,1,735,836千克/年,且多余每年517.29米夫的能量。由于柴油发电机铅系统包括在该方案中,达到了0.217 /千瓦时的COE,CO_2为5,124,879千克/年,达到2325万美元的NPC。随着导流负荷的电加热器有效地利用过量能量的量。

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