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Optimization of hybrid wind-diesel-battery energy system for remote areas of Malaysia

机译:马来西亚偏远地区的混合式风-柴油-电池能源系统的优化

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A high level of individuals on the planet is living in decentralized, rustic and remote territories which are topographically detached from lattice association. Power dissemination and consistent fuel transportation to create electrical vitality for these regions represent an awesome test. A savvy lattice mixture vitality framework has been outlined and mimicked to help a little group considering a normal load request of 72 kWh/d and a pinnacle heap of 7 kW. The recreation and enhancement procedure of the cross breed vitality framework, with the thought of meteorological information, have been finished by HOMER Software. Reenactment comes about demonstrate that the proposed framework is financially and ecologically doable, and that the Net Present Cost (NPC) and in addition CO2 outflow are diminished by around 74% and 92% separately every year contrasted with customary power plants. The NPC of the streamlined framework has been observed to be about US$ 76,901 with the Cost of Energy (COE) of about US$ 0.198/kWh. This upgraded mixture vitality framework will be pertinent for every single other area on the planet with comparative meteorological and natural conditions.
机译:地球上有很多人生活在分散,乡村和偏远的地区,这些地区在地形上与晶格关联分离。功率分配和一致的燃料运输为这些地区创造了生命力,这是一个了不起的测试。概述并模拟了一个精明的晶格混合物生命力框架,以考虑到正常负荷要求为72 kWh / d和顶峰堆为7 kW的情况来帮助一小部分人。借助气象信息,跨品种生命力框架的重新创建和增强过程已由HOMER Software完成。重新制定的结果表明,所提出的框架在财务和生态上都是可行的,并且净现值(NPC)和另外的CO 2 流出量每年分别减少了约74%和92%。与传统的发电厂形成对比。精简框架的NPC约为76,901美元,能源成本(COE)约为0.198美元/ kWh。升级后的混合生命力框架将适用于地球上其他每个具有相对气象和自然条件的地区。

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