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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
Training of dual band HT-based emergency communication tools on member of KTB BPBD, yogyakarta Denny Hardiyanto; Samuel Kristiyana; Dyah Anggun Sartika; Irfan Ahmad; Israa Al_Barazanchi
Jurnal Pengabdian dan Pemberdayaan Masyarakat Indonesia Vol. 1 No. 2 (2021)
Publisher : Peneliti Teknologi Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jppmi.v1i2.6

Abstract

Currently, the development of communication technology is very advanced with the presence of cellular and internet technology. However, when there is a public security disturbance and in an emergency situation, cellular communication devices are very dependent on electricity sources and pulses to communicate. Besides, if a natural disaster occurs, the power source will go out and the cellular provider BTS will not function. Radio communication can be used as an adequate alternative technology in dealing with emergencies. Radio communication can be established using simple equipment such as HT (Hand Transceiver), transmitting antennas and repeater stations to extend the communication range. The advantages of radio communication are that it is easier to implement, economical, and has a wide coverage. Therefore, the purpose of this community service activity is to improve skills in using emergency communication tools and provide an understanding of Standard Operating Procedures on how to communicate in an emergency situation. The target of this activity includes members of the National Disaster Relief Agency (BPBD) at Yogyakarta City. There are 2 activities, namely radio frequency regulation and skills workshops using emergency communication tools (HT). The result of this community service activity is that the participants are skilled in communicating using HT in times of emergency.
Empowerment of mushroom farming communities with iot based monitoring in Karang Kepanjen, Sleman Iswanto Suwarno; Nia Maharani Raharja; Alfian Maarif; Muhammad Abdus Shomad; Adhianty Nurjanah; Dhiya Uddin Rijalusalam; Rachmad Andri Atmoko; Irfan Ahmad; Israa Al_barazanchi; Sashikala Mishra
Jurnal Pengabdian dan Pemberdayaan Masyarakat Indonesia Vol. 1 No. 5 (2021)
Publisher : Peneliti Teknologi Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jppmi.v1i5.25

Abstract

Mugi Barokah “Mushroom Farmer UKM” is located in an agricultural area in Sleman Regency, precisely in Karang Kepanjen Hamlet, Trimulyo Village, Sleman District, Sleman Regency, Yogyakarta Special Region has been conducting mushroom cultivation activities since 2009. Mugi Barokah mushroom cultivation is led by Mr. Agus Arif Effendi. Actually, these SMEs have a large enough market opportunity for mushroom cultivation. However, this opportunity brings consequences and problems, namely the lack of a touch of innovation from the mushroom temperature and humidity monitoring system. The mushroom cultivation treatments they do include adjusting the intensity of the light by installing mosquito nets, adjusting the humidity of the mushroom room by spraying with water and to determine the temperature and humidity in the mushroom room by visual checking. Information about some of the problems faced by mushroom cultivation must of course be addressed as soon as possible as a solution for developing mushroom cultivation businesses. The team that proposes service as part of the community who happens to be involved in the world of education, feels compelled to help provide solutions to the problems faced by the mushroom farmer's business. Through this proposed science and technology activity program and based on the needs analysis that has been carried out, the service team tries to offer solutions to these problems with a touch of science and technology, namely through the main activity of designing remote mushroom monitoring with IoT technology. Temperature monitoring and control tool for mushroom fungus using an Arduino microcontroller, a DH11 sensor for temperature and humidity sensors and using IOT technology for remote monitoring. By using this tool the mushroom fungus can be monitored and controlled remotely using the Android application.
Technology Dissemination of Smart Tani Fish Farmers in Karang Kepanjen Hamlet, Trimulyo Village, Sleman District, Sleman Regency Iswanto Suwarno; Nia Maharani Raharja; Dhiya Uddin Rijalusalam; Rachmad Andri Atmoko; Irfan Ahmad; Israa Al_barazanchi; Sashikala Mishra
Jurnal Pengabdian dan Pemberdayaan Masyarakat Indonesia Vol. 1 No. 7 (2021)
Publisher : Peneliti Teknologi Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jppmi.v1i7.35

Abstract

Smartani "Fish Farming SMEs" is located in an agricultural area in Sleman Regency, precisely in Karang Kepanjen Hamlet, Trimulyo Village, Sleman District, Sleman Regency, Yogyakarta Special Region has been conducting tilapia cultivation activities since 2012. Smartani fishery cultivation is led by Mr. Bondan Widoropexy. In fact, Mr. Bondan Widoropeksi has a large enough market opportunity for aquaculture. However, this opportunity brings consequences and problems, namely the lack of a touch of innovation from the fish feeding system. Information about some of the problems faced by fish farming must be addressed as soon as possible as a solution for developing aquaculture business. Through this proposed science and technology activity program and based on the needs analysis that has been carried out, the service team tries to offer solutions to these problems with a touch of science and technology, namely through the main activity of designing remote fish feeders with IoT technology. This remote fish feed technology uses Arduino type microcontroller technology which is equipped with remote communication technology using GSM modules. The schedule of fish feeders and the dose of the amount of feed needed by the fish can be set automatically and remotely using IoT technology.