Are High Renewable Energy Shares In Large Power Grids In Indonesia Too Expensive?

Matthias Günther
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Abstract

High shares of power from renewable resources in large power supply grids do not imply insurmountable technical problem anymore. A question is rather whether, besides the technical feasibility, it is also economically viable to go for a high share of power from sun, wind, water, geothermal resources and biomass. This paper scrutinizes the costs of a renewable-energy based power supply in the Java-Bali grid, by far the largest grid in Indonesia. The study refers to a challenging power supply scenario in which 100% of the power in the Java-Bali grid comes from renewable resources. This scenario is expressed in a one-year modeling of the load and the respective power supply in the grid. The modeling identifies possible sets of installed capacities of the different power plant types and storage systems that allow the supply of the required electricity. A cost scenario is applied to these sets, which renders the system costs, and finally the power generation costs. All scenarios refer to the year 2050. The results show that, assuming moderate financing costs, the cost of the electricity generation in the possible supply systems would not be higher than that in currently existing systems in developed countries; and it would even not be far away from the power generation cost in the current Java-Bali grid. A secondary result of the study is that the usage of special long-term storage systems for the balancing of seasonal power supply fluctuations, additionally to pumped storages and batteries, is not economically necessary in the considered grid.
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印尼大型电网中可再生能源的高份额是否过于昂贵?
可再生能源电力在大型电网中的高份额不再意味着不可逾越的技术问题。问题是,除了技术上的可行性外,从太阳能、风能、水能、地热资源和生物质能中获取高份额的电力在经济上是否可行。本文详细分析了爪哇-巴厘岛电网的可再生能源电力供应成本,该电网是迄今为止印尼最大的电网。该研究提到了一个具有挑战性的电力供应方案,其中Java-Bali电网中100%的电力来自可再生资源。这一场景是通过对电网中负载和各自电源进行为期一年的建模来表示的。该模型确定了不同电厂类型和存储系统的装机容量的可能集合,以提供所需的电力。将成本场景应用于这些集合,从而呈现系统成本,最后是发电成本。所有的情景都是指2050年。结果表明,在融资成本适中的情况下,可能的供电系统的发电成本不会高于发达国家现有系统的发电成本;它甚至与目前爪哇-巴厘岛电网的发电成本相差不远。该研究的第二个结果是,在考虑的电网中,除了抽水蓄能和电池外,使用特殊的长期存储系统来平衡季节性电力供应波动在经济上是不必要的。
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