cover
Contact Name
Mohammad Shihab
Contact Email
shihab@president.ac.id
Phone
+6281219410771
Journal Mail Official
journal_jeee@president.ac.id
Editorial Address
President University Master of Technology Management Program Jalan Ki Hajar Dewantara Mekarmukti Cikarang Utara, Bekasi, Jawa Barat Indonesia
Location
Kota bekasi,
Jawa barat
INDONESIA
JEEE- Journal of Electrical And Electronics Engineering
Published by President University
ISSN : 25279432     EISSN : 25281232     DOI : -
Core Subject : Engineering,
JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING merupakan jurnal keilmuan bidang Teknik Elektro yang memuat tulisan-tulisan ilmiah mengenai penelitian-penelitian murni dan terapan serta ulasan-ulasan umum tentang perkembangan teori, metode dan ilmu-ilmu terapan terkait.
Articles 30 Documents
Portable Wind Turbine for Energy Recharging Device Applications Joni Welman Simatupang; Kristiantho Sulistiohadi
Journal of Electrical And Electronics Engineering Vol 1, No 01 (2016): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1073.474 KB) | DOI: 10.33021/jeee.v1i01.56

Abstract

A new design of a portable, inexpensive, and easy to assemble horizontal axis wind turbine (HAWT) system for harnessing wind energy that can be reproduced by individuals in the need of electricity has been implemented. The design still follows the Betz’ law theory to define the maximum electrical power that can be extracted from the wind in an open flow area. From our measurement data, the Betz Limit (C) of our design wind turbine is approximately 0.48, meaning it can capture not more than 48% of the incoming kinetic energy of the wind. It was found also that the system can generate a stable at least 5V and 1A of DC voltage and current, respectively. The wind speed is at least ranging from 35 to 55 km/h (∼10 to 15 m/s). We conclude that this HAWT is still able to charge some rechargeable energy recharging devices, such as smart phone or power bank. This HAWT must be put outside to obtain a good amount of wind. But, actually it does not provide a waterproof protection system to make it usable in a rainy season. For further research, a new portable wind turbine can be designed to generate more electric power with waterproof ability system such like using PVC or acrylic which is modeled by this simple prototype.Keywords: Betz Limit, energy recharging devices, harness, maximum power,  portable.
Design and Construct Water Levitation Module with Arduino Uno Zaiul Farhan; Antonius Suhartomo
Journal of Electrical And Electronics Engineering Vol 1, No 2 (2016): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (758.744 KB) | DOI: 10.33021/jeee.v1i2.191

Abstract

Sound is exotic thing that ready to be researched and explored. Although many researches were done on this theme, there are still many things that can be obtained when researching about sound. For example, levitate things with ultrasonic frequency. It is amazing that sound, which is like a vibe, can levitate things. From that idea, the writer fascinated to construct the water levitation circuit. In this project, with Arduino and a strobe light, the writer creates a design that makes it possible to see the water levitation phenomenon with using audible frequency.The device provides an optical illusion, so the blink of LED that hit droplets from tube, pumped by water pump, looks like levitate with human eyes.  This method can show the variations of water levitation phenomena with correct time setting of the blinking LED and frequency setting of the speaker. The synchronization frequency of LED and speaker will make the water stay. But, frequency of the LED higher than the speaker, then it will make droplets ascend and vice versa, if frequency of LED lower than the speaker, it will make droplets descend as normally it does.Keywords: strobe light, sound, droplets, levitation, optical illusion, LED.
Analisis Intensitas Konsumsi Energi RS Medirossa Cikarang Sielvya Rahma Maulida; Mia Galina; Joni Welman Simatupang
Journal of Electrical And Electronics Engineering Vol 2, No 1 (2018): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (4598.187 KB) | DOI: 10.33021/jeee.v2i1.708

Abstract

Medirossa Hospital is one of the health care centers in the city of Cikarang which in its operations does not only focus on the customer excellent services but also pay attention to the comfort of the environment and the completeness of the health facilities. One factor that determines the convenience of a hospital is the intensity of lighting. From the observations made by the authors of several rooms at Medirossa Cikarang Hospital, namely the casemix room, medical records, VIP treatment, and the hall leading to the second floor has less bright lighting. This observation was carried out by surveying 26 respondents who were hospital employees and visitors. From the observation, 53% of respondents stated that the room was "not bright enough." To find out whether the lighting in the room surveyed is actually less than the Indonesian National Standard (SNI 6197: 2011), it is necessary to measure the intensity of lighting using a measuring instrument, calculating and analyzing of IKE (intensity of energy consumption) values, which can then be continued with lighting improvement if the IKE value is below the applicable lighting standard. Based on the results of calculations and analysis it was found that the value of IKE RS Medirossa Cikarang is 248.603 kWh/m² year. This value indicates that electricity consumption is efficient, but has not fulfilled the applicable standards. To achieve the intensity of lighting in the rooms that have been surveyed, it is necessary to add a lamp that resulted in additional load of 748 Watt. This study aims to provide analysis and suggestion to regarding the intensity of energy consumption of RS Medirossa Cikarang for hospital lighting improvements which in turn can improve the comfort of hospital employees and visitors
Automatic Wireless Mobile Weather Station Vincent Vincent; Enndi Chiu; Kim Sung Tae; Ikhsan Bukhori; Surawan Setiyadi
Journal of Electrical And Electronics Engineering Vol 2, No 2 (2018)
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (3986.688 KB) | DOI: 10.33021/jeee.v2i2.1086

Abstract

In the electronic devices, there are so many functions that we can use to make life easier. In the city especially, nearly all of them use technology as the system, it can also be used to store data, measuring data to help the others quantitative and qualitatively. One of the things that is very useful is the weather station, where the weather station used in the city to maintain the humidity, the intensity of the light, and the temperature. But in the rural areas, somehow the weather station is not available because of the limitation of the technology itself. And also, sometimes the place that we want to measure with is quite dangerous because there are so many predators. Because of that, we’ve come up to the new brand technology called Automatic Wireless Mobile Weather Station. This device helps us to measure the rural areas, dangerous places, using robot with wireless connection with weather station features. This device can be implemented into a moving robot and can also send us the data to the mobile phones through Bluetooth technology, and also it can measure the humidity, temperature, and the intensity of the light (unit of lux). Finally, the data can be controlled 24 hours through wireless connection, so we don’t really need to go into the location because we can control it using this Automatic Wireless Mobile Weather Station.
Perancangan Alat Pencegah Kebakaran Rumah Akibat Kelalaian Manusia Mematikan Kompor Gas Berbasis Mikrokontroler Arduino yang Terintegrasi dengan Smartphone Surawan Setiyadi; Dendra Alfi Nugroho
Journal of Electrical And Electronics Engineering Vol 3, No 1 (2019)
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (553.652 KB) | DOI: 10.33021/jeee.v3i1.1406

Abstract

Many know that the activities of most people who are at home certainly cannot be kept away from the name of cooking with gas stoves. But it was a concern because of the many cases that occurred related to gas stoves. Often from most people when cooking they forget to turn off the stove because of other activities or even leave. This can lead to potential house fires. To overcome this problem, we need a tool that can detect the condition of the gas stove, in order to prevent undesirable things from happening earlier. To avoid undesirable events due to human negligence turning off the gas stove. So the design of making tools that can determine whether there is activity of moving objects in front of the gas stove. So that if the gas stove is still burning, the gas stove will automatically turn off or be turned off remotely by the homeowner by giving notification to the homeowner's handphone.
Mengganti Mikrokontroller Mesin Dust Collector pada PT. xxx dengan PLC OMRON CP1E-NA20CD-R Surawan Setiyadi; Edo Aulia Billy Fany
Journal of Electrical And Electronics Engineering Vol 3, No 2 (2019)
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (831.11 KB) | DOI: 10.33021/jeee.v3i2.1490

Abstract

As a result of the production of powder processing causes a lot of dust around the production machine and factory. This of course can cause pollution. Dust needs to be collected using a Dust Collector (DC) machine. The controller on the DC machine at PT. xxx is often damaged in the control unit and requires repairs at a cost of around Rp. 5,000,000 per unit. In facts there are about 10 units of machines at PT.xxx that must work all. Because of DC machines are often damaged in their controllers, the maintenance department made a development to make replacement DC machine controllers. Namely using the Programmable Logic Controller (PLC). This PLC replaces the microcontroller unit on the DC machine, PLC uses ladder diagram programming language that is easily understood by some people working in the world of control. PLC parts that are easily found in the market and programming languages that are easy to understand and reliability make one of the reasons this PLC is used to replace the microcontroller unit.
Digital Clock with Speech Recognition Timothy Nathaniel Halim; Antonius Suhartomo
Journal of Electrical And Electronics Engineering Vol 1, No 01 (2016): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1001.944 KB) | DOI: 10.33021/jeee.v1i01.57

Abstract

One of the functions of a digital clock is to wake us from sleep, in order to perform the activities as scheduled. Technological developments allow the incorporation of digital clock function with voice recognition, making it easier for us to do as to turn off the alarm without having to press a button, asking what time without having to view the display, and so forth. From these points of view, the idea to design and to implement a “Digital Clock with Speech Recognition” came up. This experiment concentrates in designing the hardware and the software that will work as an integration system of circuit that has the digital clock function. The circuit also has other function which is the speech recognition. Through this function, the user of the circuit will be able to record his or her voice in the form of short words. After the recording, the user can start to order the circuit to recognize his or hervoice. Finally, both digital clock and speech recognition functions are combined to work together, therefore when there is a voice recognized, then the speech recognition circuit will send a digital signal to the digital clock circuit to be processed as an input signal to operate certain digital clock function.Keywords: digital clock, speech recognition, microcontroller ATmega8535
A Remote Controlled Car Using Wireless Technology Joni Welman Simatupang; Michael Yosua
Journal of Electrical And Electronics Engineering Vol 1, No 2 (2016): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (934.577 KB) | DOI: 10.33021/jeee.v1i2.192

Abstract

Automation or automatic control is the use of various control system for operating any equipment or device such as a remote controlled (toy) car, switching on telephone networks, and other useful applications with minimal or reduced human interventions. This paper proposes a design and implementation of a remote controlled car by wi-fi technology via computer or mobile devices. In completing this research work, wireless software and hardware technologies have been used, such as wireless module of ESP8266 for transceiver (transmitter and receiver), Arduino Uno as microcontroller, an H-bridge L293D IC for motor controller, and two electric DC motors are used to move the automobile. Two objectives of this project are to expand the limitation range of a normal radio  frequency car using wi-fi technology and also to create a ubiquitous technology for automobile that operates in daily life with a control system. The test result shows that the controlled car can move in any direction. However, the performance depends on the device signal strength where the maximum testing range is only about 20 meters’ distance from the user’s location.Keywords: automation, wi-fi technology, remote controlled car, Arduino, signal strength.
Perancangan Sistem Deteksi Dini Lift Barang Berbasis Arduino di PT Dharma Electrindo Manufacturing Maharani Ongky Anggraini; Antonius Suhartomo
Journal of Electrical And Electronics Engineering Vol 2, No 1 (2018): JOURNAL OF ELECTRICAL AND ELECTRONICS ENGINEERING
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (2995.069 KB) | DOI: 10.33021/jeee.v2i1.709

Abstract

PT Dharma Electrindo Manufacturing is one of the compant in automotive manufacture. This company has two plants which are in Cikarang and Cirebon, with Cirebon focusing on the manufacturing side. PT Dharma Electrindo Manufacturing Cirebon branch has three floors for production. Thus it is necessary to have a freight elevator to ease production process on second and third floor with support from AGV (Automatic Guided Vehicle) with the market price of Rp 200.000.000 without humans directly controlling it. Several accidents could happen due to unsynchronized elevator door and AGV. In 2017, 15 accidents occurred on the elevator door on the second floor. Because of this, an early detection system has been implemented in the form of a crossbar on the door such that the AGV does not hit the acrelyte-made door which could cause the AGV to fall and caused the company loss about Rp 200.000.000 or the broken elevator door all through 2017 which caused Rp 202.250.000 loss. It is hoped that this crossbar implementation is developed using stabilizer.
Light Detection For White Asparagus Farm Using Arduino Bintang Ramadhan Prasetya; Galih Suryo Gumilang; Yogi Saputra; Joni Welman Simatupang
Journal of Electrical And Electronics Engineering Vol 2, No 2 (2018)
Publisher : President University

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (2937.149 KB) | DOI: 10.33021/jeee.v2i2.1087

Abstract

Nowadays, Technology has been a part of human life. in the world of agriculture, the existence of technology greatly helps plant productivity. Automation in the world of agriculture becomes the new norm, in many aspects of the field, such as in optimizing plant growth. One particular plant which requires delicate environment condition is white asparagus which could only grow optimally under low to no light environment. This project is a device to detect light in the plant room. When the light intensity passes certain threshold, an alarm is activated and a warning message is sent through Short Messaging Service to the owner’s cellphone. In addition, this device is also equipped by fire sensor to detect fire in the planting area and provides warning through the same channel. The test of the device gave promising results to be developed further in real planting area.

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