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Planning of Hybrid Micro-Hydro and Solar Photovoltaic Systems for Rural Areas of Central Java, Indonesia

机译:印度尼西亚中部爪哇省农村杂交微水流和太阳能光伏系统的规划

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This paper proposes the planning of hybrid micro-hydro and solar photovoltaic system for rural areas of Central Java, Indonesia. The Indonesian government has paid great attention to the development of renewable energy sources, especially solar and hydropower. One area that has a high potential for both types of energy is the province of Central Java, located on the island of Java, Indonesia. In this research, we conduct field research to determine the ideal capacity of solar and micro-hydro hybrid power plants, electricity load analysis, and optimal design of hybrid power plants. Data on the potential of micro-hydro plants are obtained by direct measurement on the Ancol Bligo irrigation channel located in Bligo village, Ngluwar district, Magelang regency, Central Java province, Indonesia. Data on solar power potential were obtained from NASA’s database for solar radiation in the Central Java region. Hydropower potential data include channel length, debit, heads, and power potential in irrigation channels originating from rivers. These data are used to design an optimal hybrid power plant. The method used to obtain the optimal design of a hybrid power plant system is based on the analysis of capital costs, grid sales, cost of energy, and net present cost. Based on the parameters of the analysis, the composition of the optimal generator for the on-grid scheme to the distribution network can be determined. The results showed that hybrid power plants were able to meet the needs of electrical energy in the villages around the power plant and that the excess energy could be sold to national electricity providers.
机译:本文提出了印度尼西亚中爪哇省农村杂交微水流和太阳能光伏系统的规划。印度尼西亚政府非常重视可再生能源,特别是太阳能和水电的发展。对两种能源有很大潜力的一个领域是位于印度尼西亚爪哇岛的中部爪哇省。在这项研究中,我们开展了现场研究,以确定太阳能和微水混合动力电厂,电力负荷分析和混合发电厂最优设计的理想能力。关于微水力植物的潜力数据是通过直接测量在印度尼西亚中部爪哇省中爪哇省的Bligo Village,Magelang Regency的ANCOL Bligo灌溉频道。从NASA的中爪哇地区的太阳辐射数据库获得了关于太阳能电位的数据。水电潜在数据包括源自河流的灌溉渠道中的沟道长度,借方,头部和电源。这些数据用于设计最佳的混合动力设备。用于获得混合动力厂系统最佳设计的方法是基于资本成本的分析,电网销售,能源成本和净目前的成本。基于分析的参数,可以确定用于分配网络的网格方案的最佳发生器的组成。结果表明,混合动力厂能够满足电厂周围的村庄中电能的需求,并且可以将多余的能量销售给国家电力供应商。

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