Analisa Desain Konfigurasi dan Kapasitas Pada Sistem On – Grid Dengan Implementasi Pada PV Saat Waktu Beban Puncak Menggunakan HOMER

Main Article Content

Luluk Anjar Rahmawati
Rinaldy Dalimi

Abstract

This research aims to provide information and methodology that functions to reduce electricity costs in the industrial sector which previously used fossil fuel as electricity fuel by using renewable energy using the Homer application. This research uses photovoltaics installed on the roof of an industry in Bekasi, Indonesia, as time management for industrial peak loads. So that obtain the lowest price with the best system, several scenarios are used that use comparisons to obtain the most appropriate and useful results for this industry. The first scenario is implemented only with the PLN power grid without photovoltaics, or PV. The second scenario applies PV installed and working during industrial WBP (peak load times) with BESS (Battery Energy Storage System), and the rest is carried out by the PLN electricity network with PV at industrial peak load times. The third is a scenario with PV and PLN electricity grid connection with low capital expenditure (material prices) but in compliance with needs. With the three types of scenarios above, a comparison of LCOE, NPV and IRR is used as a reference for the three scenarios and a third scenario is obtained that meets this industry. This is proven by economic results, namely, there is a decrease in daily tariffs to $0.0818/kWh, IRR 11%, NPV $14.6M and pay back period 8.6 years.

Downloads

Download data is not yet available.

Article Details

How to Cite
Anjar Rahmawati, L., & Dalimi, R. (2024). Analisa Desain Konfigurasi dan Kapasitas Pada Sistem On – Grid Dengan Implementasi Pada PV Saat Waktu Beban Puncak Menggunakan HOMER. ENERGI & KELISTRIKAN, 15(2), 101–108. Retrieved from http://jurnal.itpln.ac.id/energi/article/view/2260
Section
Articles

References

Akbar, A. W., Hiron, N., & Nadrotan, N. (2019). Perencanaan Sistem Pembangkit Listrik Dengan Sumber Energi Terbarukan (HOMER) di Daerah Pesisir Pantai Pangandaran. JEEE, 01(01), 12–18.

Aprillia, B. S., & Foury Rigoursyah, M. A. (2020). Design On-Grid Solar Power System for 450 VA Conventional Housing using HOMER Software. IOP Conference Series: Materials Science and Engineering, 771(1). https://doi.org/10.1088/1757-899X/771/1/012011

Aziz, A. S., Tajuddin, M. F. N., Zidane, T. E. K., Su, C. L., Alrubaie, A. J. K., & Alwazzan, M. J. (2022). Techno-economic and environmental evaluation of PV/diesel/battery hybrid energy system using improved dispatch strategy. Energy Reports, 8, 6794–6814. https://doi.org/10.1016/j.egyr.2022.05.021

Bagaskoro, B., Windarta, J., & Denis. (2019). PERANCANGAN DAN ANALISIS EKONOMI TEKNIK PEMBANGKIT LISTRIK TENAGA SURYA SISTEM OFFGRID MENGGUNAKAN PERANGKAT LUNAK HOMER DI KAWASAN WISATA PANTAI PULAU CEMARA (Vol. 8, Issue 2). https://ejournal3.undip.ac.id/index.php/transient

Bank Indonesia. (2023a). BI Rate.

Bank Indonesia. (2023b). Data Inflasi Period Inflation Data.

Bayu, H., & Windarta, J. (2021). Tinjauan Kebijakan dan Regulasi Pengembangan PLTS di Indonesia. Jurnal Energi Baru Dan Terbarukan, 2(3), 123–132. https://doi.org/10.14710/jebt.2021.10043

El Hammoumi, A., Chtita, S., Motahhir, S., & El Ghzizal, A. (2022). Solar PV energy: From material to use, and the most commonly used techniques to maximize the power output of PV systems: A focus on solar trackers and floating solar panels. In Energy Reports (Vol. 8, pp. 11992–12010). Elsevier Ltd. https://doi.org/10.1016/j.egyr.2022.09.054

Fahmi, J., Windarta, J., & Wardaya, A. Y. (2021). Studi Awal Penerapan Distributed Generation untuk Optimalisasi PLTS Atap On Grid pada Pelanggan PLN Sistem Jawa Bali untuk Memenuhi Target EBT Nasional. Jurnal Energi Baru Dan Terbarukan, 2(1), 1–13. https://doi.org/10.14710/jebt.2021.10038

Faruqui, M. F. I., Jawad, A., & Masood, N. Al. (2023). Techno-economic assessment of power generation potential from floating solar photovoltaic systems in Bangladesh. Heliyon, 9(6). https://doi.org/10.1016/j.heliyon.2023.e16785

Hidayat, A., Ramdani, S. A., & Romadhoni, S. L. (2022). PEMBANGUNAN PEMBANGKIT LISTRIK TENAGA SURYA DI WADUK CIRATA, KABUPATEN PURWAKARTA. Jurnal Inovasi Penelitian, 3(6), 6701–6706.

Ikromi, M., & Dalimi, R. (2020). Methodology to reduce production cost by injecting PV system in industrial load management. Proceeding - 2nd International Conference on Technology and Policy in Electric Power and Energy, ICT-PEP 2020, 16–20. https://doi.org/10.1109/ICT-PEP50916.2020.9249910

I-V CURVES OF PV MODULE(445W) P-V CURVES OF PV MODULE(445W). (2020a). www.trinasolar.com

I-V CURVES OF PV MODULE(445W) P-V CURVES OF PV MODULE(445W). (2020b). www.trinasolar.com

Jufri, F. H., Sudiarto, B., & Garniwa, I. (2021). Optimal Hybrid Renewable Energy System Design for Generation Cost Reduction and Increased Electrification in Isolated Grid in Indonesia. 2021 IEEE 4th International Conference on Power and Energy Applications, ICPEA 2021, 147–152. https://doi.org/10.1109/ICPEA52760.2021.9639295

Kavlak, G., Mcnerney, J., & Trancik, J. E. (2018). Evaluating the causes of cost reduction in photovoltaic modules.

Khare, V., Chaturvedi, P., & Mishra, M. (2023). Solar energy system concept change from trending technology: A comprehensive review. In e-Prime - Advances in Electrical Engineering, Electronics and Energy (Vol. 4). Elsevier Ltd. https://doi.org/10.1016/j.prime.2023.100183

Lazard with support from A P R I L 2 0 2 3. (2023).

Noura Ayuningsih, A., Chandra, A., Aini Oktaviani, M., Athyah, N., Dwi AmandaM, P., Devita Sulaiman, S., & Citra, Z. (2023). RATIFIKASI PARIS AGREEMENT DAN PENGAPLIKASIAN NATIONAL DETERMINED CONTRIBUTION (NDC) INDONESIA. In JISIP-UNJA (Vol. 7, Issue 1).

Pujantoro, M. (2019). Levelized Cost of Electricity in Indonesia. www.iesr.or.id

Putri, D. N., Made, I., & Arsana, A. (2023). Kajian Terhadap Aspek Geospasial Kabupaten dan Kota yang Bercirikan Kepulauan di Indonesia. 18(2), 253.

Romadhona, & Dalimi, R. (2023). Economic Analysis of Solar Photovoltaic Power Plant Planning at Taman Melati Depok Apartment. Jurnal Pendidikan Teknologi Kejuruan, 6(2), 98–105. https://doi.org/10.24036/jptk.v6i2.32823

Savira, R., & Sudiarto, B. (2023). Effect of PLTS Power Factor Settings on Power Losses and Voltage Conditions in 20 kV Medium Voltage Networks. Jurnal Pendidikan Teknologi Kejuruan, 6(2), 80–89. https://doi.org/10.24036/jptk.v6i2.32523

Siregar, B. D., Sudiarto, B., & Setiabudy, R. (2019). Economic Analysis of Renewable Energy Power Plant in Sumatra, Indonesia. IEEE International Conference on Innovative Research and Development (ICIRD).

SUN2000-100KTL-M1. (n.d.-a).

SUN2000-100KTL-M1. (n.d.-b).

Windarta, J., Sinuraya, E. W., Abidin, A. Z., Setyawan, A. E., & Angghika. (2019). PERANCANGAN PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) BERBASIS HOMER DI SMA NEGERI 6 SURAKARTA SEBAGAI SEKOLAH HEMAT ENERGI DAN RAMAH LINGKUNGAN.

With support from A P R I L 2 0 2 3. (2023).

Yudiartono, Y., Jaka, W., & Adiarso, A. (2023). Dekarbonisasi Sektor Ketenagalistrikan Sampai 2050 Dalam Kerangka Kebijakan Energi Nasional. Jurnal Energi Baru Dan Terbarukan, 4(2), 1–17. https://doi.org/10.14710/jebt.2023.16966

INFORMASI INDUSTRI 2022. (n.d.)