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Journal : JURNAL TEKNOLOGI DAN OPEN SOURCE

SISTEM PENDUKUNG KEPUTUSAN PEMILIHAN DOSEN BERPRESTASI DI LINGKUNGAN FAKULTAS TARBIYAH DAN KEGURUAN MENGGUNAKAN FUZZY MULTIPLE ATTRIBUT DECISION MAKING (FMADM) Helpi Nopriandi; Nofri Wandi Al Hafiz
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol 2 No 2 (2019): Jurnal Teknologi dan Open Source, December 2019
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (700.684 KB) | DOI: 10.36378/jtos.v2i2.365

Abstract

Berdasarkan Penelitian di Fakultas Tarbiyah dan Keguruan Universitas Islam Kuantan Singingi alur penyelesian dosen berprestasi masih dilakukan secara manual seperti melakukan pencatatan pengajaran, Status Dosen Penelitian,Pengabdian Kepada Masyarakat dan melaksanakan Catur Dharma perguruan tinggi. Dosen merupakan tenaga pengajar yang diangkat oleh pemerintah maupun oleh yayasan di mana dosen itu mengabdi. Decision Support Systems atau lebih dikenal dengan Sistem Pendukung Keputusan adalah bagian dari sebuah sistem informasi yang berbasis komputer termasuk sistem yang berbasis ilmu pengetahuan dan dipakai untuk mendukung pengambil keputusan dalam suatu organisasi atau perusahaan. untuk memudahkan pimpinan dalam mengambil sebuah keputusan dibuatlah suatu sistem pengambil keputusan dengan menggunakan Fuzzy Multiple Attribute Decision Making (FMADM) digunakan untuk mencari alternatif optimalkan dari sejumlah alternatif dengan kriteria tertentu, sedangkan metode Simple Additive Weighting (SAW). Metode SAW sering juga dikenal istilah metode penjumlahan terbobot. Konsep dasar metode SAW adalah mencari penjumlahan terbobot dari rating kinerja pada setiap alternatif dari semua atribut. Hal ini berguna untuk memudahkan pengambil keputusan yang terkait dengan masalah pemilihan dosen berprestasi, sehingga akan di dapatkan dosen yang paling layak diberi reward atau penghargaan.
PERANCANGAN SISTEM PENYIRAMAN TANAMAN OTOMATIS MEGGUNAKAN ARDUINO Nofri Wandi Al Hafiz; Erlinda Erlinda
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol 3 No 2 (2020): Jurnal Teknologi dan Open Source, December 2020
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v3i2.831

Abstract

Every plant really needs water to be able to live and as much as possible to be watered on time, because if it is too late, the growth of the plant will be hampered or even unable to develop and die, therefore there are other alternatives for plant lovers in doing plant care and not making it. We are busy in watering plants, namely using plant watering technology using Arduino electronic control, where this tool can distribute water to each plant by detecting water needs in the plant, if the planting medium on the plant is dry, it will turn on the tool and water the plant. The current method of watering plants requires energy and takes time for us to water the plants and we don't even know whether these plants need water because the surface of the soil is dry, so there is still a lot of water available inside, with this controller the water content can be determined, if the water content in the low soil, the tool will automatically turn on and water the plants
Data Analysis of Informatics Engineering Students of Islamic University of Kuantan Singingi Harianja Harianja; Nofri Wandi Al-Hafiz; Jasri Jasri
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 6 No. 1 (2023): Jurnal Teknologi dan Open Source, June 2023
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v6i1.2691

Abstract

Increasing student enrolment is the hope of any study program, including the study program at the Islamic University of Kuantan Singingi, especially the Informatics Engineering study program. During its existence, the Informatics Engineering program has experienced ups and downs in the number of students. This circumstance naturally affects the workload of the Informatics Engineering lecturers and the burden on the university's operating costs. So far, efforts have been made to increase the number of students, but this has not been done by analyzing existing student data. This study aims to analyze the existing student data in the hope that the results of this analysis can be useful for the Informatics Engineering study program at the Kuantan Singingi Islamic University of Kuantan Singingi to make decisions to increase the number of students in the future. Students in the Informatics Engineering study program come from different regions in Kuantan Singingi Regency and the surrounding districts. This is an opportunity for the university to analyze and visualize areas with a large number of enrollees. Using R programming, this student data can be easily visualized and presented.
Design of Rainfall Intensity Measuring Instrument Using IoT-Based Microcontroller Nofri Wandi Al-Hafiz; Helpi Nopriandi; Harianja
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 7 No. 2 (2024): Jurnal Teknologi dan Open Source, December 2024
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v7i2.2898

Abstract

The design of a rainfall intensity measuring device utilizing an Internet of Things (IoT)-based microcontroller aims to offer a more precise, efficient, and real-time solution for rainfall measurement compared to the traditional manual systems. While manual systems are still commonly used, they have significant limitations, including reliance on human observation, slow response times, and measurement inaccuracies. In this study, the designed tool incorporates a tipping bucket rain sensor connected to an ESP32 or ESP8266 microcontroller and a Wi-Fi module to transmit real-time data to a cloud-based IoT platform. The collected data is processed and visualized through graphs accessible via web or mobile applications. This system facilitates continuous rainfall monitoring and provides fast, accurate information that can be applied to disaster mitigation, agricultural planning, and natural resource management. By leveraging IoT technology, this system addresses the shortcomings of manual methods, offering considerable benefits for more timely and data-driven decision-making.
Data Analysis of Informatics Engineering Students of Islamic University of Kuantan Singingi Harianja, Harianja; Al-Hafiz, Nofri Wandi; Jasri, Jasri
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 6 No. 1 (2023): Jurnal Teknologi dan Open Source, June 2023
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v6i1.2691

Abstract

Increasing student enrolment is the hope of any study program, including the study program at the Islamic University of Kuantan Singingi, especially the Informatics Engineering study program. During its existence, the Informatics Engineering program has experienced ups and downs in the number of students. This circumstance naturally affects the workload of the Informatics Engineering lecturers and the burden on the university's operating costs. So far, efforts have been made to increase the number of students, but this has not been done by analyzing existing student data. This study aims to analyze the existing student data in the hope that the results of this analysis can be useful for the Informatics Engineering study program at the Kuantan Singingi Islamic University of Kuantan Singingi to make decisions to increase the number of students in the future. Students in the Informatics Engineering study program come from different regions in Kuantan Singingi Regency and the surrounding districts. This is an opportunity for the university to analyze and visualize areas with a large number of enrollees. Using R programming, this student data can be easily visualized and presented.
Design of Rainfall Intensity Measuring Instrument Using IoT-Based Microcontroller Nofri Wandi Al-Hafiz; Helpi Nopriandi; Harianja
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 7 No. 2 (2024): Jurnal Teknologi dan Open Source, December 2024
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v7i2.2898

Abstract

The design of a rainfall intensity measuring device utilizing an Internet of Things (IoT)-based microcontroller aims to offer a more precise, efficient, and real-time solution for rainfall measurement compared to the traditional manual systems. While manual systems are still commonly used, they have significant limitations, including reliance on human observation, slow response times, and measurement inaccuracies. In this study, the designed tool incorporates a tipping bucket rain sensor connected to an ESP32 or ESP8266 microcontroller and a Wi-Fi module to transmit real-time data to a cloud-based IoT platform. The collected data is processed and visualized through graphs accessible via web or mobile applications. This system facilitates continuous rainfall monitoring and provides fast, accurate information that can be applied to disaster mitigation, agricultural planning, and natural resource management. By leveraging IoT technology, this system addresses the shortcomings of manual methods, offering considerable benefits for more timely and data-driven decision-making.
Analysis and Design of Monolithic System Architecture Migration to Microservices at PT. MALINDO Conceptual Approach Oktafanda, Ego; Al-Hafiz, Nofri Wandi; Latif, Abdul; Santosa, Firman
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 8 No. 1 (2025): Jurnal Teknologi dan Open Source, June 2025
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v8i1.4265

Abstract

This study analyzes the transition from a monolithic architecture to a microservices architecture within a corporate environment, specifically at PT.MALINDO. While the monolithic architecture was once effective, it now presents several challenges, including maintenance complexity, limited scalability, and frequent occurrences of deadlocks. The analysis highlights the growing need for a more adaptive and flexible system to respond to dynamic business requirements. In this context, a microservices architecture is proposed as a solution to overcome the limitations of the monolithic approach. Microservices break down applications into small, independent services, enabling easier and more efficient development, deployment, and maintenance. By using components such as an API Gateway and message brokers like Apache Kafka, inter-service communications can be managed more effectively, ensuring improved system performance and resilience. The findings indicate that transitioning to a microservices architecture can significantly enhance the system's performance, flexibility, and scalability. The resulting hypothesis suggests that adopting microservices will offer long-term benefits for PT.MALINDO, particularly in addressing system complexity and improving responsiveness to evolving business needs. Recommendations include implementation strategies and change management practices necessary to ensure a smooth and low-risk transit
Analysis and Modeling of the Internal Quality Audit Information System Islamic University of Kuantan Singingi Nopriandi, Helpi; Al-Hafiz, Nofri Wandi; Chairani, Sri
JURNAL TEKNOLOGI DAN OPEN SOURCE Vol. 8 No. 1 (2025): Jurnal Teknologi dan Open Source, June 2025
Publisher : Universitas Islam Kuantan Singingi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/jtos.v8i1.4456

Abstract

Internal Quality Audit (AMI) is an integral part of the Internal Quality Assurance System (SPMI) for Higher Education (Dikti), aimed at evaluating the implementation of Dikti standards. AMI plays a crucial role in examining the compliance with Dikti standards during their implementation phase. The AMI system encompasses numerous processes, including desk evaluation, visitations, requests for corrective actions, and documentation. Moreover, AMI activities ideally should be conducted annually for every Unit at Islamic University of Kuantan Singingi. Due to the limited number of auditors, it is necessary to develop an information system that enables easier monitoring and decision-making processes. This will ensure efficient and sustainable management. The unstructured archiving of audit results increases the risk of data loss and complicates information access. To address this issue, it is necessary to develop an information system using the System Development Life Cycle (SDLC) approach, which involves four major phases: planning, analysis, design, and implementation. The AMI system developed aims to support the AMI process in higher education institutions, especially at Islamic University of Kuantan Singingi (UNIKS). Before the implementation of the information system, several challenges were faced, such as difficulties in quickly obtaining information related to quality improvements for each unit periodically. This research produced a design for an information system that integrates various AMI requirements, including scheduling, self-assessment (desk evaluation) by the institution, visitations, corrective actions, and reporting.