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Evaluasi Indeks Konsumsi Energi Listrik Di Rumah Sakit Islam Ibnu Sina Pekanbaru Hamzah Eteruddin; Aidil Rahman; Masnur Putra Halilintar; Abrar Tanjung
Jurnal Elektro dan Mesin Terapan Vol. 7 No. 2 (2021): Jurnal Elektro dan Mesin Terapan (ELEMENTER)
Publisher : Politeknik Caltex Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (548.361 KB) | DOI: 10.35143/elementer.v7i2.5173

Abstract

The Energy Consumption Index (ECI) is the ratio between energy consumption and the building area. In this study, the calculation of used power, energy consumption, and the ECI value for each room was carried out. Based on the results of calculations carried out, the consumption of electrical energy at the Islamic Hospital Ibnu Sina (IHIS) Pekanbaru are 180,718,628 kWh/month, which is quite efficient with a value of 15.1 kWh /m2/ month. Energy Saving Opportunities (ESO) that are carried out are energy management, namely in lighting, air conditioners, and other equipment. After the ESO was carried out, the electrical energy consumption down to 158,902,555 kWh/month (saving 11.68%), electricity consumption for lighting was 16,570,158 kWh/month (12.11%), the electrical energy consumption of air conditioners amounted to 114,162.557 kWh/month (11.193%), and the electrical energy consumption of other equipment amounted to 28,169.84 kWh/month (13.066%). Energy consumption IHIS, Pekanbaru after ESO, is categorized into efficient value ECI of 13.4 kWh / m2/ month (11.258%).
Analisis Sistem Distribusi 20 kV Untuk Memperbaiki Kinerja Dan Keandalan Sistem Distribusi Menggunakan Electrical Transient Analisys Program Abrar Tanjung
Seminar Nasional Teknologi Informasi Komunikasi dan Industri 2012: SNTIKI 4
Publisher : UIN Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (697.65 KB)

Abstract

Electric power is the basic human needs in life. In Indonesia, electricity partly served by the State-Owned Company (PLN) and the other using an electric generator engine with its own power as an energy source, such as: the increasing number of industries and companies in the rapidly growing demand PLN electricity supply must be reliable, inexpensive and economical. With the increasing demand for electricity resulted in the development of generation capacity and transmission line / distribution.The distance between plants with consumers so far the distribution of electrical power through a long transmission line is generally in the form of an open airway, causing disturbances on the electrical system the greater the chance of interference. Such defects if left unchecked will lead to substantial fault current and can disrupt electric power distribution to the consumer. Result and analisys In research to improve the performance and reliability of distribution systems by optimizing the determination of optimum mounting location in PT. PLN (Persero) Cabang Dumai Gardu Hubung Ujung Tanjung for the capacitor 3 x 600 kVAr using program ETAP 4.0.0 version accepted in order to obtain a voltage of 17.6 kV irreparable loss and saving power of 553 kW and 817 kVAr.Reliability level of 0.7638 (index value 76%)Keywords: Distribution systems, capacitors, power loss, voltage drop
ANALISIS KINERJA SISTEM KELISTRIKAN UNIVERSITAS LANCANG KUNING Abrar Tanjung
Seminar Nasional Teknologi Informasi Komunikasi dan Industri 2015: SNTIKI 7
Publisher : UIN Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (364.38 KB)

Abstract

To distribute the electrical power needs of electricity producers to consumers required a distribution network and substations. Based on General Requirements for Electrical Installations ( PUIL ) 2000 and Standard State Electricity Company ( SPLN ), the system can be said to be effective if the voltage drop does not exceed 5 % of the nominal voltage and power loss does not exceed 10 % of the total power supplied The electrical system at the University of Lancang Kuning need to pay attention to large cross-section conductor and conductor prisoners are used to minimize power loss and voltage drop. The reliability of the electrical power distribution system is determined by efforts to minimize power loss and voltage drop occurs in the electrical system. Power loss and voltage drop affects the power distribution capabilities, both of which result from pengahantar channel length between the transformer with the buildings as user load, interference with electrical systems. This study aimed to analyze the voltage drop calculation, over load and power losses and balance the load on the Lancang Kuning University.Results of analysis and calculation of electrical systems Lancang Kuning University gained power loss total of 23.5 kW and low voltage three phase occurred in the law school of 237, 5 volts and load imbalance of the phase R = 199.15 Amper ; Amper phase S = 154.05; and phase T = 121.6 AmperKeywords: electrical system, power losses, voltage drop
ANALISIS ALIRAN DAYA SETELAH PENGHANTAR PASIR PUTIH - GARUDA SAKTI BEROPERASI PADA PT. PLN (PERSERO) UNIT PELAYANAN TRANSMISI (UPT) PEKANBARU Abrar Tanjung
Journal of Scientech Research and Development Vol 3 No 1 (2021): JSRD, June 2021
Publisher : Ikatan Dosen Menulis

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (553.284 KB) | DOI: 10.56670/jsrd.v3i1.51

Abstract

Analisa aliran daya Gauss Seidel merupakan analisa aliran daya untuk memperoleh tegangan terima bus, kondisi aliran daya serta rugi-rugi daya pada saluran di sistemyang ditinjau saat operasi puncak. Sebagai sasaran dapat dijadikan sebagai dasar untuk membuat keputusan, juga sangat berperan penting dalam perencanaan, pembangunan dan perawatan sistem tenaga listrik karena operasi sistem yang optimal tergantung pada pengetahuan mengenai pengaruh interkoneksi dengan sistem yang laim, penambahan pembangkit, penambahan beban baru, pembangunan jaringan dan perbaikan serta perawatan peralatan tenaga listrik. Aliran daya pada sistem penyaluran di UPT Pekanbaru sendiri yaitu dari Gardu Induk Koto Panjang sampai ke Gardu Induk Kota Pinang. Berdasarkan hasil pembahasan menggunakan program Digsilent Power Factory diperoleh aliran daya terbesar terjadi pada rel GI Balai Pungut ke GI Duri yaitu sebesar 207,99 MVA. Sedangkan total rugi-rugi daya pada sistem Riau sebesar 19,31 MW dan 77,83 MVAR . Besar aliran daya yang mengalir dari Gardu Induk Pasir Putih ke Gardu Induk Garuda Sakti dengan menggunakan Matlab yaitu daya Aktif 39.51 MW dan daya reaktif -1,78 MVAR. Untuk hasil dari program digsilent sebesar 59,63 MW dan 24,09 MVAR dan untuk program ETAP sebesar 41.56 MW dan -15.75 MVAR..
Analisis Kinerja Sistem Kelistrikan Akibat Penambahan Gedung Fakultas Keguruan Ilmu Pendidikan Universitas Lancang Kuning Abrar Tanjung
JURNAL UNITEK Vol. 12 No. 2 (2019): Juli-Desember
Publisher : Sekolah Tinggi Teknologi Dumai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52072/unitek.v12i2.48

Abstract

Universitas Lancang Kuning merupakan suatu lembaga pendidikan yang memiliki beberapa fakultas yang mempunyai kegiatan admistrasi dan belajar mengajar, yang menggunakan peralatan listrik. Pemakaian beban listrik juga banyak dipakai dalam pemasangan lampu penerangan dan peralatan-peralatan listrik lainnya. Seperti penggunaan infokus dalam perkuliahan, penggunaan lampu penerangan setiap ruangan, penerangan jalan dan pemakaian peralatan kantor yang juga menggunakan energi listrik. Penambahan pembangunan Gedung Fakultas Keguruan dan Ilmu Pendidikan (FKIP) yang baru merupakan faktor dari akibat bertambahnya beban pemakaian energi listrik yang ada di Unilak. Berdasarkan hasil perhitungan rugi-rugi daya total sebesar 41.476 watt atau 41,476 kW dan tegangan terendah sebesar 236,60 volt di fakultas Hukum, total jatuh tegangan 278,75 volt dan ketidak seimbangan beban pada phasa R sebesar 266,52 Amper, phasa S sebesar 186,3 Amper dan phasa R sebesar 133,4 Amper. Penambahan gedung Fakultas Keguruan dan Ilmu Pendidikan dengan memasang transformator daya sebesar 60 kVA