DESAIN PLTS OFF-GRID BERDASARKAN ANALISIS OTONOMI BATERAI LEAD ACID OPZV DI ADIDAYA WORKSHOP, JAKARTA BARAT

Jonathan Oliver Ken, I Nyoman Setiawan, I Wayan Sukerayasa
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Abstract

The design of Off-Grid PV at Adidaya Workshop as an additional electrical energy supplier is based on the load requirements used for equipment and operations at the workshop. In addition to requests from the company itself, the design of Off-Grid PV is carried out to supply electrical energy to essential loads and other educational purposes. The Off-Grid PV design was carried out with the first step of field observations at Adidaya Workshop, measuring the roof area, daily electricity load profile with a Power Quality Analyzer measuring instrument, and calculating the capacity requirements of the Off-Grid PV system according to the Adidaya Workshop load. The Off-Grid PV design was carried out with 4 scenarios based on variations in solar panels and batteries. Researchers calculated the capacity of the PV system and used PVSyst software as a design simulation so that a report was obtained based on field data. In the simulation results with PVSyst, the best performance ratio is obtained which is worth 68.3% obtained from scenario 3 with a variation of 600 Wp solar panels and 540 Ah batteries and the largest yield energy output is obtained from scenario 4.
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desain plts off-grid berdasarkan analisis otonomi baterai lead acid opzv di adidaya workshop, jakarta barat
Adidaya车间的离网光伏作为一个额外的电力供应商的设计是基于车间设备和操作的负载要求。除了公司自身的要求外,进行离网光伏的设计是为了向基本负载提供电能和其他教育目的。离网光伏设计的第一步是在Adidaya车间进行现场观测,使用电能质量分析仪测量屋顶面积、日用电负荷剖面,并根据Adidaya车间负荷计算离网光伏系统容量需求。根据太阳能电池板和电池的不同,进行了4种离网光伏设计。研究人员计算了PV系统的容量,并使用PVSyst软件进行设计模拟,从而根据现场数据获得报告。在PVSyst的仿真结果中,600 Wp太阳能电池板和540 Ah电池的变化情况下,方案3的性能比为68.3%,方案4的发电量最大。
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