cover
Contact Name
Rudi Kurnianto
Contact Email
rudi.kurnianto@ee.untan.ac.id
Phone
+6285252665807
Journal Mail Official
j3eit@untan.ac.id
Editorial Address
Jl. Prof. Dr. Hadari Nawawi, Pontianak 78124, Indonesia
Location
Kota pontianak,
Kalimantan barat
INDONESIA
Journal of Electrical Engineering, Energy, and Information Technology
ISSN : -     EISSN : 30261856     DOI : http://dx.doi.org/10.26418/j3eit.v11i2
Journal of Electrical Engineering, Energy, and Information Technology (J3EIT) (E-ISSN: 3026-1856) is the latest name for the JTE UNTAN, which underwent a name change. This journal has been in circulation within UNTAN since 2013 under its previous name. The name change reflects an evolution in the topics covered by the journal, encompassing the fields of electrical engineering, energy, and information technology. With the establishment of J3EIT, it is expected to become a significant resource for the academic and research community in this discipline, fostering the exchange of knowledge and innovation among professionals in the field of electrical engineering and related areas. By consistently publishing high-quality scientific papers, this journal is expected to play a vital role in advancing knowledge in its field. J3EIT is published three times a year, April, August and December.
Articles 24 Documents
Search results for , issue "Vol 5, No 1: Januari 2017" : 24 Documents clear
RANCANG BANGUN AVR PADA SISI TEGANGAN RENDAH (TEGANGAN KONSUMEN) BERBASIS ATMEGA8 Syamsir .
Journal of Electrical Engineering, Energy, and Information Technology (J3EIT) Vol 5, No 1: Januari 2017
Publisher : Faculty of Engineering, Universitas Tanjungpura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26418/j3eit.v5i1.18991

Abstract

Abstrak— Tugas akhir ini membahas system pengaturan jala- jala listrik terhadap perubahan beban pada pembangkit listrik tenaga mikrohidro (PLTMH). Saat ini pengaturan jala-jala pada PLTMH dilakukan secara manual yang melibatkan tenaga operator   sebagai   pengendali   hidup   -   mati   lampu   beban pengatur.. Metode yang digunakan untuk mengatasi naik turun tegangan dengan cara mengendalikan lampu beban pengatur secara otomatis. Alat akan bekerja secara otomatis apabila terjadi perubahan beban pada konsumen. Naik-turun tegangan pada PLTMH disebabkan oleh perubahan beban  pada konsumen. Tegangan pada beban konsumen naik, tengan jala- jala   turun,   sebaliknya   tegangan   beban   konsumen   turun, tegangan jala-jala naik. Perubahan pada tegangan PLTMH menjadi input untuk mikrokontroller ATMega 8 untuk mengendalikan lampu  pengatur.  Berdasarkan  hasil  pengujian alat ini mampu menjaga kestabilan tegangan antara 218,1 Volt sampai dengan 221,7 Volt.   Kata kunci— Beban, Tegangan, Rangkaian Sistem Kendali dan
RANCANG BANGUN PROGRAM RUGI-RUGI LINTASAN GELOMBANG RADIO JARINGAN INDOOR BERBASIS GRAPHICAL USER INTERFACE (GUI) MATLAB Budi .
Journal of Electrical Engineering, Energy, and Information Technology (J3EIT) Vol 5, No 1: Januari 2017
Publisher : Faculty of Engineering, Universitas Tanjungpura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26418/j3eit.v5i1.19820

Abstract

The loss was parameters influence in determining the site of its. This research designing programs path loss that can be used to a match model analysis .The program is based on Graphical User Interface designed in the platform of a GUIDE matlab .Platform consisted of the outdoor Cost231 Walfisch Ikegami and Models indoor Paulsen , Cost231 Multi Wall and One Slope , for analysis match model that Mean Error and Standard Deviation , the four this model will combined in forecasting losses the radio waves of an antenna transmitter outdoor up with the recipient in building , namely partner mart on Jl. Sultan Abdurahman Number 5-6 Pontianak City .The result of comparisons match the model used shows that the combination model Cost231 Walfisch Ikegami and Cost231 Multi Wall is model suitable than either combination other. The results of its value Mean Error the combination Model Cost231 Walfisch Ikegami-Cost231 Multi Wall 5,9 db to the system 3g and 10 db on system 4g , while combination Model Cost231 Walfisch Ikegami-Paulsen -20 db to the system 3g and -17,3 db on system 4g , combination Model Cost231 Walfisch Ikegami-One Slope 14,6 db to the system 3g and 12 db  on  system  4g  and  to  standard  deviation  smallest  is  a  combination  Model  Cost231  Walfisch Ikegami-One Slope with an 8 db regarding the Cost231 Walfisch Ikegami-Cost231 Multi Wall of the smallest 9,7 db and a combination of Model Cost231 Walfisch Ikegami-Paulsen with the standard 24,6 db it to the recommended no more than 10 db       Kata kunci : Path Loss, GUI, GUIDE, Model Propagasi.
ANALISA KENAIKAN TCH (TRAFFIC CHANNEL) BLOCKING 2G MENGGUNAKAN NETACT NOKIA PADA AREA RTPO (RADIO TRANSPORT POWER OPERATION) DESA SEDAYU KABUPATEN SAMBAS Nur Kharisma Jati .
Journal of Electrical Engineering, Energy, and Information Technology (J3EIT) Vol 5, No 1: Januari 2017
Publisher : Faculty of Engineering, Universitas Tanjungpura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26418/j3eit.v5i1.18574

Abstract

Abstract TCH Blocking occurs when TCH channel allocation is inefficient to the density of traffic in a network, unavailability of TCH channels are available. Which causes inconvenience customers in making a call. Other factors that also could cause an increase TCH Blocking for problematic Hardware, Coverage inefficient and, Great inequality traffic devices contained in a cell in the network (Unbalanced traffic). Value TCH Blocking a good standard, namely between 0 ≤ 0,5 % standard PT Telkomsel.  If  the  value  exceeds  the  standards  TCH  Blocking  Good,  it  is  necessary  to  optimal handling. One of them with the analysis parameters via DUMP Nokia (parameter place container). Then analyzed the change of parameters via Nokia NetAct. Nokia NetAct is an automatic tool to improve the quality and performance of the radio network. NetAct allows monitoring, management, and consolidated operating GSM and 3G networks of Telkomsel. As of June 27, 2016 s / d July 2, 2016 there is an increase TCH Blocking in BTS SBS015MG1_SEDAYUMG2 amounted to 0.987%; 10.099%; 1.163%; 1.352% and 0.985%. The increase led to calls experiencing block, because it was the unavailability of the channel TCH provided. After a change in the Channel Type parameter from 3 to 2. TCH rise Blocking problems can be overcome. So the value of TCH Blocking becomes 0,00%, it can be concluded from these values are no longer calls that have failed (Block), because of the unavailability of the available channel TCH.   Keywords - TCH Blocking, Blocking, Nokia NetAct, Coverage.
Pemodelan Pembangkit Listrik Tenaga Angin Untuk Analisis Aliran Daya Dermanus Niko .
Journal of Electrical Engineering, Energy, and Information Technology (J3EIT) Vol 5, No 1: Januari 2017
Publisher : Faculty of Engineering, Universitas Tanjungpura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26418/j3eit.v5i1.19586

Abstract

Wind farms plant has been developed in many countries especially those having large wind energy potential. If  the  wind  turbine  is  connected /  interconnected grid  power  systems, can  caused  operational problems of the system. Therefore modeling of wind farms to power flow analysis is needed to determine the effect that caused the system. Varied plant located on 5-bus system. then the power system model modified by adding of wind farms on the system, generator used is an induction generator. The method used in this study is Newton-Raphson method and assistance MATLAB program to calculate the power flow in the system Where these calculations are used to determine the effect of wind farms  in the power system. the combining wind farms on one bus in the power system, where the wind turbines have input Pm and output (Pg + jQg), power flow model of the induction generator there are two series impedance, and 1 impedance shunt, so that there exist two internal buses connected to the bus 5. The results obtained in this study is to add wind farms on the system can increase the capacity of power generated on the system.But the impact of this model is the system voltage profile to be ugly,so that the added capacitor bank wind turbine to supply reactive power of induction generator. After the addition of the capacitor bank in wind turbines occurring on the bus voltage is more varied and can improve the voltage profile of the system.   Keywords: Model of wind power in the system, induction generator, Newton-Rapson method

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