PUBLIC STREET LIGHTING (PJU) PLANNING BASED ON SOLAR POWER SPREADED IN THE AREA PUBLIC FACILITIES

Yosi Riduas Hais, Rudi Ramades, Abdul Manab

Abstract


Planning for Public Street Lighting (PJU) with Solar Power Plants (PLTS) consists of identifying the location of PJU points, analyzing energy needs, choosing the right components and RAB. Take into account factors such as light intensity and environmental conditions at Jambi University, because at Jambi University there are still many PJUs that lack lighting and some are completely dead. This planning aims to create an efficient and sustainable system such as Careful selection of materials, technical design and financing are key steps in ensuring the successful implementation of PJU PLTS planning, which will ultimately provide the benefits of environmentally friendly and energy efficient street lighting. The data collection location was in the Jambi University campus area, a field study was carried out to determine the lighting needs in PJUs. The measurement results were analyzed by referring to PUPR Ministerial Regulation Number 25/PRT/M/2022 concerning street lighting specifications in urban areas, knowing how many panels will be used, measure the width of the main road and to measure the width of the green open space, design the PJU PLTS design and calculate the RAB to describe the installation that will be used in the planning that will be carried out. The results of the design planning for 1 lane PLTS PJU and 2 lane PLTS PJU with different heights, 1 lane PLTS PJU has a height of 7 meters while 2 lane PLTS PJU has a height of 12 meters, 1 lane PLTS PJU and 2 lane PLTS PJU also have differences in the distance between lights, 1 lane PLTS PJU, the distance between lights is 1.5 meters and 2 lane PLTS PJU, the distance between lights is 3 meters. The two PLTS PJUs both use concrete foundations because the concrete foundation has very great strength so that it can withstand the load of the PLTS PJU poles well and the total RAB required for planning the PLTS PJUs requires funds of IDR 1,509,816,000.

Keywords


planning. public street lighting, draft cost budget

References


Alpiza, 2022. “Evaluasi Penerangan Jalan Umum (PJU) Di

Universitas Jambi Kampus Pinang Masak Mendalo” jurusan

Teknik elektro, universitas jambi, JAMBI.

Asrul, Asrul, Reyhan Kyai Demak, and Rustan Hatib.

"Komparasi Energi Surya Dengan Lampu Halogen Terhadap

Efisiensi Modul Photovoltaic Tipe Multicrystalline." Jurnal

Mekanikal 7.1 (2016).

Carter, D.K.dkk.2011. LED Street Light Research

Project.Pennyslvania: Carnegie Mellon University.

Donny T B Sihombing, Ir. Surya Tarmizi Kasim Msi, 2019.

“Perencanaan Sistem Penerangan Jalan Umum Dan Taman

Di Areal Kampus Usu Dengan Menggunakan Teknologi

Tenaga Surya (Aplikasi Di Areal Pendopo Dan Lapangan

Parkir)” jurnal Teknik Elektro Universitas Padjajaran.

Effendi, Asnal dan Suryana Asep.2013.Evaluasi Sistem

Pencahayaan Lampu Jalan di Kecamatan Sungai Bahar.

Jurnal Teknik Eletro ITP, Volume 2 No. 2.

Gobal Solar Atlas. (2023). Retrieved Oktober 25, 2021,

From Https://Globalsolaratlas.Info:

https://Globalsolaratlas.Info/map?C=-

Geotama, Agoen Yogha.2017.”Perencanaan Instalasi

Penerangan Jalan Umum Pada Jalan Soekarno HattaBontang (Perencanaan Ulang Instalasi Penerangan Jalan

Umum)”Tugas Akhir.Smarinda:Politeknik Negri Samarinda.

Gunoto, Pamor, and Sofan Sofyan, 2020. "Perancangan

Pembangkit Listrik Tenaga Surya 100 Wp Untuk

Penerangan Lampu Di Ruang Selasar Fakultas Teknik

Universitas Riau Kepulauan." Sigma Teknika 3.2.

Hutajulu, Albert Gifson, et al. 2022. "Penerapan Penerangan

Jalan Umum LED 90 Wp Berbasis Solar Cell di Perumahan

Villa Mutiara Serpong Tangerang Selatan." TERANG 4.2 :

-175.

Indra Bayu Sukma, Abdul Azis, Irine Kartika Pebrianti,

“Perencanaan Lampu Penerangan Jalan Umum

Menggunakan Tenaga Surya (Solar Cell) Untuk AlternatifPenerangan Jalan Talang Pete Plaju Darat”. Ilmu Bahan

Listrik. Medan: Yayasan Kita Menulis.

Irsyam, Muhammad, And Arief Wibowo. "Perancangan

Lampu Pju (Perancangan Jalan Umum) Dan Penyedia Daya

Menggunakan Solar Cell Secara Otomatis." Sigma

Teknika 5.2 (2022): 314-322.

Laela, Latifah Nur.2015.Fisikan Bangunan 2.Jakarta:Griya

Kreasi.

J. Clerk Maxwell, A Treatise on Electricity and Magnetism,

rd ed., vol. 2. Oxford: Clarendon, 1892, pp.68–73.

I. S. Jacobs and C. P. Bean, “Fine particles, thin films and

exchange anisotropy,” in Magnetism, vol. III, G. T. Rado

and H. Suhl, Eds. New York: Academic, 1963, pp. 271–350




DOI: https://doi.org/10.30596/rele.v7i1.19228

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