Strategi Pembebanan PLTS Off Grid untuk Peningkatan Kontinuitas Suplai Energi Listrik

S. Syafii, Yona Mayura, Muhardika Muhardika
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引用次数: 6

Abstract

Solar power plants using environmentally friendly technology in the process of harvesting energy from the sun can be a solution to the future electricity crisis so that it has been the most widely developed and reliable alternative. However, the conversion of solar energy depends on the availability and conditions of sunlight. In sunny conditions, the PV system can serve large loads while charging the battery to the maximum. While in cloudy weather conditions or at night, the PV system serves the load and without charge of the battery. The battery will discharge the stored energy until it runs out and the supply to the load will be cut off before the desired time. Therefore, research on PV system loading strategy is needed to increase the amount of electricity from solar energy and maintain the continuity of electricity supply to the load. The load power management strategy follows the conditions of sunny, cloudy, rainy or night time by considering the remaining capacity of the battery that can be used. Load installations are designed to consist of low, medium and high load installations. Simulation results show that the use of PV loading management strategies can increase the operating time of the PV system. When the remaining 15% battery capacity and PLN supply is available, the supply will be switched to PLN. The remaining 15% of PV battery capacity could be used to maintain electricity supply to a low load if the PLN supply interrupted. Thus the use of the charging strategy will increase the supply of electricity from renewable energy and improve the continuity of electricity supply.
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增加电能供应的持续不断的推论
太阳能发电厂在从太阳中获取能源的过程中使用环保技术,可以解决未来的电力危机,因此它已成为最广泛开发和最可靠的替代方案。然而,太阳能的转换取决于太阳光的可用性和条件。在阳光充足的条件下,光伏系统可以为大负载供电,同时最大限度地为电池充电。在多云天气条件下或夜间,光伏系统为负载供电,且不对电池充电。电池将对储存的能量进行放电,直到能量耗尽,并且在所需时间之前切断对负载的供电。因此,需要研究光伏系统的负载策略,以增加太阳能发电量,并保持向负载供电的连续性。负载功率管理策略通过考虑可使用电池的剩余容量,遵循晴天、阴天、雨天或夜间的条件。负荷装置设计为包括低、中、高负荷装置。仿真结果表明,使用光伏负荷管理策略可以增加光伏系统的运行时间。当剩余15%的电池容量和PLN电源可用时,电源将切换到PLN。如果印尼国家电力公司的供电中断,剩余15%的光伏电池容量可用于维持低负荷的电力供应。因此,充电策略的使用将增加可再生能源的电力供应,并提高电力供应的连续性。
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审稿时长
24 weeks
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