BESS Revolutionizes Renewable Stability in Indonesia

Muhamad Saifudin Zuhri, Jamaluddin Jamaluddin, Shazana Dhiya Ayuni, I. Anshory
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Abstract

This study examines the integration of Battery Energy Storage Systems (BESS) with Solar Power Plants (PLTS) to enhance electrical grid stability in Indonesia, where 90% of electricity is from fossil fuels. The intermittent nature of PLTS often destabilizes the network, causing frequency hunting or blackouts. Using Etap 12.6 software, simulations showed that adding BESS to hybrid PLTS-PLTD systems significantly mitigates these issues. For instance, a 50% drop in PLTS power without BESS required a 55% increase in PLTD power, but with BESS, this increase was only 34%. Thus, BESS is crucial for stabilizing renewable energy integration and supporting Indonesia’s Net-Zero Emissions goal. Highlights:   BESS Stabilizes Power: Reduces impact of PLTS power fluctuations on PLTD. Simulation Insight: 50% PLTS drop increases PLTD by 34% with BESS. Net-Zero Goal: BESS supports Indonesia’s renewable energy and emission targets.   Keywords: Renewable Energy, Solar Power, Battery Storage, Electrical Grid Stability, Indonesia
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BESS 革新了印度尼西亚的可再生能源稳定性
印度尼西亚 90% 的电力来自化石燃料,本研究探讨了如何将电池储能系统 (BESS) 与太阳能发电厂 (PLTS) 相结合,以增强电网的稳定性。太阳能发电站的间歇性经常会破坏电网的稳定性,导致频率偏移或停电。使用 Etap 12.6 软件进行的模拟显示,在 PLTS-PLTD 混合系统中添加 BESS 可显著缓解这些问题。例如,在没有 BESS 的情况下,如果 PLTS 功率下降 50%,PLTD 功率就需要增加 55%,而在有 BESS 的情况下,这一增幅仅为 34%。因此,BESS 对于稳定可再生能源集成和支持印尼的净零排放目标至关重要。亮点: BESS 稳定电力:减少 PLTS 功率波动对 PLTD 的影响。模拟洞察:使用 BESS 后,PLTS 下降 50%,PLTD 上升 34%。零净排放目标:BESS 支持印尼的可再生能源和排放目标。 关键词可再生能源、太阳能、电池储能、电网稳定性、印度尼西亚
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