Bali Energy Planning: Optimization of Energy Resources for Electrical Generation 2019-2028

Eldi F. Nasution, Jakfar Shadiq, H. Purnomo, Joanna Francisca Socaningrumline
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引用次数: 1

Abstract

Bali is part of a subsystem on the Java-Bali interconnection system. The peak load in the Bali subsystem is 900 MW on February 26th, 2019, at 19.30 WIB. Electric power in the Bali subsystem is supplied from power plants in Bali and transferred through 150 kV submarine cables from power plants in the East Java.In the period 2019-2028, Bali's subsystem peak load continued to increase from 932 MW to 1625 MW. The demand for electric power in Bali is increasing meanwhile the power transfer capacity through submarine cables and power generation capacity in the Bali subsystem is limited. On the other hand, 39 % electricity generation in Bali using fuel oil which have limited operations by government policies. With these conditions, it is predicted that in 2021-2023 the Bali subsystem will be deficit.In this paper will present the composition of energy, the type of technology and the cost of electricity production by considering objective functions and constraints until 2028 to overcome the deficit in the Bali subsystem
巴厘岛能源规划:2019-2028年发电能源资源优化
Bali是Java-Bali互连系统的一个子系统的一部分。2019年2月26日19时30分,巴厘岛子系统的峰值负荷为900兆瓦。巴厘岛分系统的电力由巴厘岛的发电厂提供,并通过150千伏海底电缆从东爪哇的发电厂输送。2019-2028年期间,巴厘岛分系统峰值负荷从932兆瓦持续增加到1625兆瓦。巴厘的电力需求不断增加,而海底电缆的电力传输能力和巴厘子系统的发电能力有限。另一方面,巴厘岛39%的发电使用燃料油,政府政策限制了运营。在这些条件下,预计2021-2023年巴厘子系统将出现赤字。在本文中,将通过考虑目标函数和约束,提出能源的组成,技术的类型和电力生产的成本,直到2028年,以克服巴厘岛子系统的赤字
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