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Design and Analysis of Solar Energy Mini-Grid for Rural Electrification

机译:农村电气化太阳能微型电网的设计与分析

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Electric power is a key driver of economic growth and prosperity. But access to electricity still remains a distant dream for majority of the population living in the remote and arid areas of developing countries mostly sub-Saharan Africa. With the growing demand for safe and reliable energy, solar as a source of energy remains the least utilized energy source in the Kenyan economy and yet one of the safest forms of energy. Solar photovoltaic (PV) systems have shown their potential in rural electrification projects around the world. A solar based mini-grid is a solar PV (photovoltaic) plant with a localized distribution network to a unit village, or a cluster of villages, providing alternating current (AC). Basically it consists of solar PV modules of a certain capacity, solar inverters for converting the D.C power to AC power, housing for the battery bank and plant control systems. In areas where there is no grid connection or where diesel generation is the main power source, PV plants are able to generate electricity efficiently and relatively cheap. This paper was aimed at developing a standard procedure for the design and analysis of a mini-grid connected solar PV systems using PV modules connected in an array field. The standard procedure developed was validated in the design of a 20 kVA mini-grid-connected solar PV system for Nanyuki town in Laikipia County, Kenya. The analysis and evaluation of the load capacity requirements for the solar mini-grid were done. Data collected from SWERA were compared with the local load requirements. Optimization of the load versus production capacity of the solar system was carried out . The results showed that a mini-grid system of 20 kVA might be developed at a capital cost of US$ 56,000 to cater for 8400 households including a school and dispensary. Analyses of the simulation results show that the project when implemented will supply about 61 KW·h electricity per day or 22.2 MWh annually, which is about 15% of Nanyuki’s annual electricity consumption. The project also stands the chance of saving about 200 tonnes of CO 2 ) which will have been emitted by a crude oil fired thermal power plant generating the same amount of electricity. At the prevailing tariff conditions in the country, this project can be considered as financially viable with feed-in tariff scheme or other incentives such as grants/capital subsidies when applied. However, the other non-financial benefits like the greenhouse gas emissions savings can, in the long run, help mitigate the adverse effects of the climate change problem plaguing the entire earth.
机译:电力是经济增长和繁荣的关键驱动力。但是,对于大多数生活在撒哈拉以南非洲以南的偏远和干旱地区的大多数人口来说,获得电力仍然是一个遥不可及的梦想。随着对安全可靠的能源需求的不断增长,太阳能一直是肯尼亚经济中使用最少的能源,但仍是最安全的能源之一。太阳能光伏(PV)系统已在全球农村电气化项目中显示出其潜力。基于太阳能的微型电网是具有到一个单位村庄或一组村庄的局部分布网络的太阳能PV(光伏)电站,提供交流电(AC)。它基本上由一定容量的太阳能PV模块,将DC电源转换为AC电源的太阳能逆变器,电池组的外壳和工厂控制系统组成。在没有电网连接或以柴油为主要动力的地区,光伏电站能够高效且相对便宜地发电。本文旨在开发一种标准程序,用于设计和分析使用以阵列方式连接的光伏模块的微型电网连接的太阳能光伏系统。在肯尼亚莱基皮亚县Nanyuki镇设计的20 kVA微型并网太阳能光伏系统的设计中验证了开发的标准程序。对太阳能微电网的负荷能力要求进行了分析和评估。将从SWERA收集的数据与本地负载需求进行比较。优化了负载对太阳系的生产能力。结果表明,可以开发一个20 kVA的微型电网系统,资本成本为56,000美元,以满足包括学校和药房在内的8400户家庭的需要。对模拟结果的分析表明,该项目实施后将每天提供约61 KW·h的电力,或每年22.2 MWh,约占Nanyuki年用电量的15%。该项目还有望节省约200吨的CO 2),而这将由发电量相同的原油火力发电厂排放。在该国现行的关税条件下,如果采用上网电价计划或其他激励措施,例如赠款/资本补贴,则该项目在财务上可以认为是可行的。但是,从长远来看,其他非经济利益(如温室气体排放节省)可以帮助减轻困扰整个地球的气候变化问题的不利影响。

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