cover
Contact Name
Eko Suprapto
Contact Email
teknikjepca@gmail.com
Phone
+6281366628321
Journal Mail Official
teknikjepca@gmail.com
Editorial Address
Fakultas Teknik Universitas Batanghari Jl. Slamet Ryadi, Broni-Jambi Kodepos: 36122
Location
Kota jambi,
Jambi
INDONESIA
Journal of Electrical Power Control and Automation (JEPCA)
ISSN : -     EISSN : 2621556X     DOI : 10.33087/jepca
Core Subject : Engineering,
Journal of Electrical Power Control and Automation (JEPCA) rises 2 (two) times a year which is in June and December. The journal publishes articles of research results, and the articles that are entered should not be the result of plagiarism and have not yet been published elsewhere. The article will be reviewed by the reviewer and the result will be communicated to the author. This journal opens up a huge opportunity for authors who wish to contribute to Journal of Electrical Power Control and Automation (JEPCA). Journal of Electrical Power Control and Automation (JEPCA) covers field of science: Power Distribution Power Electronics Control system Automation Electronics Engineering and Energy Management
Articles 5 Documents
Search results for , issue "Vol 3, No 1 (2020): Juni" : 5 Documents clear
Analisis Komponen Saluran Udara Tegangan Menengah (SUTM) 20 KV di Penyulang Merbau - Jambi Rozlinda Dewi
Journal of Electrical Power Control and Automation (JEPCA) Vol 3, No 1 (2020): Juni
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (641.703 KB) | DOI: 10.33087/jepca.v3i1.36

Abstract

Distribution network planning is not loose from how the distribution system is built. From planning (the construction of the following components) to implementation in the field, determining the quality and reliability of the system can be fulfilled. This research analyzes about the implementation of medium-voltage air duct components (SUTM) 20 kV rework location Merbau in the area Ma. Tembesi Kab. Batanghari-Jambi, is in accordance with the standard used by PLN (S-PLN). One is how to determine the number of components used in a SUTM project. The research method used is the observation and measurement methods in the field. The observation method uses standardized standard theory according to the standard Book of State electricity General Company (S-PLN). The results concluded that the use of components in the field for the use of an AAAC cable conductor for 11,025 M is almost close to the standard, the difference only ranges from 7.2% (+). While the use of Poles although the same number of 70 BH covers a type of concrete pole 12 m 200 And as many as 69 BH, pole 9m 100 And 13 PCs, but there is a difference in the amount of the use of Poles 12m and 9m between the calculated and realization values The use of poles of certain lengths for project executor should reference the PLN standard even though the workload is still being fulfilled (200 And). With always being evaluated in each project, this data can be used as input for the project owner or executor, so that the quality and reliability of the system can be fulfilledĀ 
Analisa Ergonomis Pemanfaatan Meja dan Sofa dari Limbah Ban Mobil Diana Chandra Dewi
Journal of Electrical Power Control and Automation (JEPCA) Vol 3, No 1 (2020): Juni
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (782.914 KB) | DOI: 10.33087/jepca.v3i1.32

Abstract

The more the number of vehicles increases, the more problems that arise, for example air pollution from running engine activities and the amount of used tire waste from the vehicle. Waste from used tires can cause various serious problems if not handled properly. Used tires are waste that is harmful to the environment. This type of waste will be difficult to decompose by decomposing bacteria, this will be very dangerous for the environment. This study aims to analyze tables and sofas by utilizing car tire waste as the main raw material and in order to fulfill the ENASE aspect so that the tables and sofas made can be said to be ergonomic. The methods used in this study include qualitative and quantitative methods. Data processing techniques in this study used a comparison test and multiple linear regression test (ANOVA) to ensure relevant data. In the comparison test that has been done there are differences between all variables before and after and in the multiple linear regression test (ANOVA) that have been carried out there is no influence between the dependent variable and the independent variable.
Sistem Pengujian Tegangan Boost Converter Pada Pembangkit ListrikTenaga Air (PLTH) Picohydro Kapasitas Rendah M Suyanto; Subandi Subandi; Syafriyudin Syafriyudin; Isa Mubarok
Journal of Electrical Power Control and Automation (JEPCA) Vol 3, No 1 (2020): Juni
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33087/jepca.v3i1.33

Abstract

Voltage testing, on hybrid power plants (PLTH), uses two sources that are solar/solar power plants and waterwheel power plants. Supporting components to produce electric energy conversion one of them is boostconverter which is the main subject. Therefore the author is interested in making and testing the voltage, on the boost converter with the aim to maximize the performance of the DC Genertator as a pensupplay Batterai/accu on PLTH Pico Hydro. The DC-voltage source of the DC-DC converter can be obtained from a generator, or an AC voltage source that is air-conditioned to DC. While Dc-DC converter is a power electronic circuit, to convert a DC to DC voltage input into the output voltage with a greater value. The test results of the voltage from the field data can be concluded as follows. The voltage boost converter test results, on the Pico Hydro Hybrid power plant can produce a voltage of 13 volts from the output DC Generator 8.39 Volt. The output voltage generated by the boost converter is 13.4 volts, can be stable although the output voltage of the generator is variable. With the addition of the tool boost converter on PLTH Pico Hydro, can help battery charging/ACCU to charge the required voltage of the battery is 12 volts, from the boos convevter 13.4 volt long time charging ACCU 5.3 hours.
Pengujian Karakteristik Turbin Angin Tipe Horizontal Sudu Flat Multiblade Dengan Pengaturan Sudut Sudu Syafriyudin Syafriyudin; M Suyanto; Subandi Subandi; M Nurkhakim W
Journal of Electrical Power Control and Automation (JEPCA) Vol 3, No 1 (2020): Juni
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1000.467 KB) | DOI: 10.33087/jepca.v3i1.34

Abstract

One effort to overcome the energy crisis is to utilize wind energy as a power source. Angina power Plant is a method for generating electrical energy by rotating the angina turbine connected with the generator, the electric energy produced by the generator is stored in an element of electric energy storage (battery). The next one will be channeled to load center like household. The Perarancangan of the horizontal type flat Multiblade Sudu is using a microcontroller that can change the angle of the sudu according to the wind speed so as to maximize the power of wind potential energy. For a sudu angle setting that can adjust the speed of the wind, use two servo motors that have been control by the Arduinouno from the input anemometer so that the angle of the sudu can adjust the wind speed. The results have shown that the turbine-angle arrangement of the turbines can increase the rotation of the wind turbine, thereby increasing the voltage raised in the generator. The optimal angle of the Sudu is at a 15o angle, at a wind speed of 9.5 m/s, resulting in a turbine round of 610 rpm.
Analisis Limbah Kelapa Sawit Sebagai Bahan Bakar Boiler dengan Menggunakan Variasi Campuran Antara Fiber dan Cangkang Buah Sawit Jatmiko Edi Siswanto
Journal of Electrical Power Control and Automation (JEPCA) Vol 3, No 1 (2020): Juni
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (854.17 KB) | DOI: 10.33087/jepca.v3i1.35

Abstract

The growth of the palm oil management industry in Jambi which has an impact on the increasing size of palm oil management holidays include Fiber and Shells. Each processing of 1 ton of FFB produces 120 kg of fiber and produces 50 kg of shells. Where the two wastes have a high calorific value and thousands of tons of FFB are processed in Jambi every month. In this analysis will analyze the composition of combustion using fiber and shell to get the highest calorific value on the Boiler, where the composition analyzed is the ratio of 100% Fiber, 75% Fiber 25% Shell, 50% Fiber 50% Shell, 25% Fiber 75% Shell 100% shell. The results of research analysis The heating value of fiber and shell composition variations ranged from 14978,053 kJ/kg to 15463,083 kJ/kg. With the highest heating value is 100% fiber composition (15463,083 kJ / kg), and the lowest heating value is 100% shell composition. (14978,053 kJ/kg). The composition that gives the highest profit is the composition of 100% fiber. With the details of the value of water content, air requirements, low flue gas, and also produces a high heating value.

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