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Contact Name
Iswanto
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jtcisptti@gmail.com
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+628995023004
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Office Address: Jl. Empu Sedah No. 12, Pringwulung, Condongcatur, Kec. Depok, Kabupaten Sleman, Daerah Istimewa Yogyakarta 55281, Indonesia
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INDONESIA
Journal of Telecommunication Control and Intelligent System
ISSN : 28082036     EISSN : 2808182X     DOI : https://doi.org/10.4771211/
JTCIS (Journal of Telecommunication Control and Intelligent Systems) is a high-level academic series publication in theory in Control, Telecommunications, and Intelligent Systems covering antenna design engineering, telecommunications engineering, intelligent systems engineering, embedded control systems, and the Internet of Things. The book series invites academics, researchers and practitioners to submit articles and reports which are the result of work, research and studies oriented towards the application of information technology products for the development of society in general. JTCIS accepts each article in the form of pure research reports, technical reports from implementation experience in the field, systematic literature reviews, opinions from experts, experienced practitioners, and leaders, as well as counterarguments for specific positions.
Articles 15 Documents
Quality of Service Analysis on The Network Lte-Advanced Between Smartfren and Provider Telkomsel on Malioboro Street Yogyakarta Ahmad Dwi Pranata; Widyasmoro; Yessi Jusman
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 1 (2021): Monograph Book of Telecommunications
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i1.27

Abstract

LTE-Advanced is one of the communication technologies that can build the global telecommunications industry. As one of the bases for the use of networks that are widely used in the world, the LTE-Advanced network can meet consumer needs. There are several factors that can affect the quality of the network (network quality), one of which is the quality of service. In this study, to measure the quality of service using 3 parameters, namely throughput, latency and jitter. Based on the results that have been carried out using the walk test method and speedtest software for 4 days, the average throughput range value for smartfren providers is 19.8-28.2 Mbps and for Telkomsel providers of 32.5-49.1 Mbps of course. the results from both providers are included in the TIPHON standard excel category because they are in the range >2.1 mbps. In the latency parameter, the average range for both providers is 24.6-28.3 ms on the smartfren provider and 27.9-42.3 ms on the Telkomsel provider if it is included in the TIPHON standard, the results from both providers are in the perfect category because they are at ranges < 150 ms. In the jitter parameter, the average range of results is 8.3-12.7 ms on the smartfren provider while on the Telkomsel provider it is 16-50.9 ms, the average range of the jitter parameters includes index 3 or good because it is in the range 0-75 ms. Based on the results of the measurement of quality of service which consists of 3 parameters, namely throughput, latency and jitter, all of them are included in the appropriate category and are good for use in the Malioboro road area and its surroundings.
Android Based Light Control System Using Arduino Yuda Irawan; Achmad Deddy Kurniawan; Refni Wahyuni; Naima Belarbi; Mbunwe Muncho Josephine
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 2 (2021): Monograph Book of Control
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i2.29

Abstract

Abstract— PT. Asuransi Bangun Askrida has many rooms where each room has lighting in every room. The lighting uses a lot of lights using a switch in every lamp and. Of course it will take a lot of time to control the room lights if you still use the manual method. In addition, manual switch control cannot save electrical energy. We only need to use electricity when needed. But sometimes it is this small thing that is often neglected by the company or its employees. For example, the room lights, companies or employees sometimes neglect to turn off the room lights, even though they are not in the room and sometimes the room is locked by the manager who has important documents. Based on these problems, the researchers are interested in designing and building a room light control system at PT. Asuransi Bangun Askrida which allows to control these lights using a smartphone. With the existence of a light control system at PT. ASURANSI BANGUN ASKRIDA based on android, it can make it easier for security officers to control lights from an ideal distance. Room light control system that has been tested and is running well.
Rocket tracking using the second order integral fuzzy logic control Iswanto Suwarno
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 2 (2021): Monograph Book of Control
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i2.31

Abstract

Fuzzy logic is logic with a degree of membership ranging from 0 to 1. Fuzzy logic is used to translate a linguistically expressed quantity. It is used as a control system because it is relatively simple and flexible to design and does not require complex mathematical models of the system to be controlled. The fuzzy control system keeps the rocket on track and moving at a constant speed. The fuzzy logic control system signal is used to control the rocket thrust. The Fuzzy Logic System has been selected as the controller because it works well on non-linear systems and simplifies program design. When used on systems that require rapid control, such as rockets, fuzzy logic systems do not perform optimally. Due to this issue, fuzzy logic is modified by incorporating second-order integral control into the modified fuzzy logic. 
Automatic Plant Watering Based on Fuzzy Decision Support System Iswanto Suwarno; Anna Nur Nazilah Chamim‬; Cosmin A. Popesc; Bruno Baruque Zanon
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 3 (2021): Monograph Book of Intellegent System
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i3.32

Abstract

Almost everyone is still doing the activity of watering plants manually, by watering the plants one by one is quite time consuming and a waste of energy. Watering plants is an activity that is always done every day by almost everyone who has plants at home, office and elsewhere. The activity of watering plants manually cannot know how much water the plants need so many plants die from excess water. With the above problems, this paper contributes in designing an automatic plant sprinkler system. With the development of technology, it is easier to water plants. Technological advances include automatic plant watering, automatic plant watering equipment utilizing a microcontroller as the brain circuit that processes the entire circuit to be used for watering plants. The microcontroller is used to read sensor data in the form of a soil moisture sensor. The sensor is processed by the microcontroller using the Fuzzy algorithm. Mamdani's fuzzy knowledge can be used as a reference when the plants are watered or not to take the values ​​of soil moisture and air temperature, so that the needs of aquatic plants can be met. This system can run automatically watering plants when the soil is dry,
Decision Tree Algorithm Based Portable Automation Device to Reduce Electricity Usage on Television Nia Maharani Raharja; Ipin Prasojo
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 3 (2021): Monograph Book of Intellegent System
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i3.33

Abstract

Abstract— Almost all television sets are equipped with a timer, but sometimes we ignore it. Due to falling asleep or suddenly being left behind, we forget to turn off the television which eventually turns on the television without anyone watching. In such a case, of course there is a waste of electricity. This article contributes to designing devices that can turn off the television when no one is watching without setting the timer that comes with the television first and portable devices for all television brands. The tool is designed using an AVR microcontroller with type AT90USB162. The PIR sensor is used to detect people in front of the television. The sensor data is processed using an AVR type microcontroller and connected to a relay to turn the television on and off. The device is designed to detect the movement of people in front of the television, so that the television turns on when people watch it.
Particle Swarm Optimization Algorithm Based Optimization of Steam Turbine Generator and Gas Turbine Generator at Pt. Sriwidjaja Fertilizer Wiwin A. Oktaviani; Taufik Barlian; Azizul Muttaqin; Israa Al_barazanchi; Irfan Ahmad
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 3 (2021): Monograph Book of Intellegent System
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i3.34

Abstract

Electricity needs at PT. PUSRI is currently generated by four main generating units in the form of a Gas Turbine Generator (GTG). The three power plants are PUSRI-II (2006-J), PUSRI-III (3006-J), PUSRI-IV (4006-J) each with a capacity of 21.588kVA. PUSRI-IB (5006-J) with a capacity of 26.65kVA. Each unit is operated in parallel via a 13.8 kV syncronizing bus. However, for reasons of generator efficiency at PT. PUSRI with gas costs that are quite expensive will gradually be replaced by a Steam Turbine Generator – Coal (STG-BB) generator. The contribution of this paper uses the Particle Swarm Optimization (PSO) algorithm to find the optimum output (MW) from each generating unit. The results of the PSO calculation provide a better solution performance compared to the real system with the same generated power variation, namely 34.25 (MW) to 37.63 (MW). The cost savings obtained from the comparison between the PSO method and the real output of the system is Rp. 5,180.509 at load 34.25 (MW) and Rp. 6,416.864 at 37.63(MW) load.
Research Methodology Design for WBAN Smart System Connection to Control Covide19 Patients Remotely Israa Al_barazanchi; Haider Rasheed Abdulshaheed; Wahidah Hashim; Ammar Ahmed Alkahtani; Rina Azlin Razali; Elika daghighi; Zahraa A. Jaaz; Shihab A. Shawkat
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 1 (2021): Monograph Book of Telecommunications
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i1.45

Abstract

The main objective of any research is to find a solution that helps solve a certain problem or improve the performance of the current solution. Therefore, sufficient justification of the study should be presented as there must be a specific problem to try to resolve it. The second objective is to prove that the research methodology developed as a proposal to solve the problem, and which is expected to achieve the results with the participation of an active contribution in this field There are two types of research methodology available, the stander and specific. The stander methodology includes the V-Shaped methodology, Design Research Methodology (DRM), and spiral methodology; Therefore, the research methodology used by this research will be scientific and relevant to cover the scientific aspects from the beginning of the work to the end. The proposed smart system will be tested using the simulation environment and will be validated by comparing the results obtained with the existing research to prove the proposed smart system called as IKS is able to increase the network performance in WBAN. The analysis of the network performance was implemented in real WBAN dataset and used the Multi-Parameter Intelligent Monitoring for Intensive Care (MIMIC) database. MIMIC database included the data recorded from 90 Intensive Care Unit (ICU) patients
A security alarm system to detect intrusion using an Arduino, a GSM module, and a motion sensor Muhammad Ahmad Baballe; Mukhtar Ibrahim Bello
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 1 (2021): Monograph Book of Telecommunications
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i1.46

Abstract

If the user power or activate the security system, the Arduino Uno will read the data when the motion sensor detects an intruder. The Arduino Uno microcontroller will activate the buzzer and sound an alarm, it will then display on the liquid crystal display (LCD) showing the intrusion. The GSM module gets the information from the Microcontroller it will send a short message service to the designated mobile number registered in the system with the help of the SIM card inserted in the GSM module that an intrusion has occurred. To communicate between the Mobile phone and GSM modem, AT command is applied to this research. This is because the GSM modem can only understand AT command declaration. From this, it can communicate with Mobile phones, computers, and Arduino microcontrollers.
Comparative Study of Gas Alarm Detection System Muhammad Ahmad Baballe; Mukhtar Ibrahim Bello; Abdulhamid Shariff Mahmoud
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 3 (2021): Monograph Book of Intellegent System
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i3.47

Abstract

Fires often occur due to negligence in using a gas stove. This paper was created in response to the increasing number of fires and explosions in today's world due to gas leaks. Key objectives about gas detection systems, their challenges, and the impact of using homes and organizations for security purposes. The gas detection system is a solution to reduce fire hazards. The installation of a gas alarm detection system is expected to help protect people's homes, organizations, hospitals, industries and institutions, especially with recent technological developments. Gas detection systems help control and monitor our homes for gas leaks that result in outbreaks and explosions.
Survey on Controlling an 8*8 led matrix with Bluetooth mobile and Arduino Ahmed majid jaafar; Al-Hussein Mathar Abbas; Zain El Abidine Mohamed Hadi
Journal of Telecommunication Control and Intelligent System Vol. 1 No. 2 (2021): Monograph Book of Control
Publisher : PTTI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jtcis.v1i2.62

Abstract

The purpose of this study is to examine the bulletin boards based on the matrix. System is attended to be interface with user by using Android application with Bluetooth, the user can send the content to be displayed in the matrix and then the message will be display and shifted. The main processing unit used is Atmega328 microcontroller which dedicated with Arduino UNO board, Shifts are used to measure, walk, and scroll through the screen to move text from right to left and vice versa, Bluetooth module is used to enable wireless network functionality and receiving feature. The system was developed in prototype circuit board and will explain it in detail on the chapter three.

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