Muhajir Syamsu
Institut Teknologi dan Bisnis Ahmad Dahlan Jakarta

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Peran Data Science dan Data Scientist Untuk Mentransformasi Data Dalam Industri 4.0 Muhajir Syamsu; Widodo Widodo
Jurnal Teknologi Informasi (JUTECH) Vol 2 No 1 (2021): JUTECH: Jurnal Teknologi Informasi
Publisher : ITB Ahmad Dahlan Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32546/jutech.v2i1.1540

Abstract

Technological developments in the era of the industrial revolution 4.0, which places the role of Data Science and Data Scientist as tools to transform data into very important data, plus the need for Data Science and Data Scientist, which is very much needed in the midst of Industry 4.0 and is able to accompany increasingly large digital data in its management. This research aims to find out how big the role of Data Science and Data Scientist in transforming data in industry 4.0. This study uses the Research Area Coverage method because this research has shifted from various fields of science, with a method design with the SISP (Strategic Information System Planning) approach using steps such as data collection, condition analysis and interpretation. The data collection technique in this research is a survey and case study approach which is conditioned by the facts or facts that occur in the field. The results of the study show that the role of Data Science and Data Scientist is very much needed in industry 4.0 to perform very large data processing, with the capabilities and skills possessed by Data Science and Data Scientist being able to accompany digital technology that develops in industry 4.0.
Pengembangan Jaringan Switching Menggunakan Metode QinQ (Studi Kasus: PT. Artajasa Pembayaran Elektronis) Pradanni Kresna Mukti; Muhajir Syamsu; Vany Terisia
Jurnal Teknologi Informasi (JUTECH) Vol 4 No 1 (2023): JUTECH: Jurnal Teknologi Informasi
Publisher : ITB Ahmad Dahlan Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32546/jutech.v4i1.2347

Abstract

PT. Artajasa Pembayaran Elektronis is an electronic payment service provider company, which is one of the companies that utilizes the reliability of connectivity in the network, to support the communication of each employee owned. Focused by the author to conduct research aimed at developing the switching network of Artajasa using QinQ method. This method is implemented to facilitate the infrastructure team and network engineers Artajasa, in managing and management of active VLAN ID owned, namely by wrapping the existing VLAN ID using an outer-vlan, QinQ method allows Artajasa when there is a need to add a new VLAN, simply add it on one of the distribution switches only (BSD-SW-IN), configuration using QinQ method is different from when Artajasa uses the trunk allowed vlan method that requires adding one by one VLAN ID on the distribution switch. In the implementation of the author in developing Artajasa switching network, testing is carried out with parameters that are in accordance with QoS standards. After doing the test, get the value of 21ms when using the QinQ method on the Delay test, better than when not using the QinQ method. Packet loss test result showing 0.005% when using the trunk allowed vlan method, after using QinQ packet loss reduce to 0%. QinQ method also affects the results throughput test is 80.64% compared without using the QinQ method that only get a 64.31% throughput presentation.
Perancangan Lampu Otomatis Menggunakan Sensor Cahaya Dan Timer Berbasis Arduino Uno Prita Niken Puspita; Muhajir Syamsu; Vany Terisia
Jurnal Teknologi Informasi (JUTECH) Vol 4 No 1 (2023): JUTECH: Jurnal Teknologi Informasi
Publisher : ITB Ahmad Dahlan Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32546/jutech.v4i1.2348

Abstract

People's lives are busy with activities outside the house, often crushing small things like turning the lights off, doing outdoor activities until late at night, dark housing conditions are very potentially criminal. The technology used to solve such problems is something of an automatic nature. Automatic technology is a home light that can turn on and off automatically. The method used is a qualitative method that has descriptive properties, i.e. the researcher describes a phenomenon with accurate data and is systematically studied. Automatic light design with a light sensor that inserts a program in an Arduino uno module that can give instructions of light on and off. The light sensor connected to the relay as an automatic switch is heavily dependent on the light resistance value received by the light sensor. When the light sensor receives less than 200, the light goes off. When at night the resistance values received by a light sensor are more than 200 then the light is automatically lit. The automatic light design uses the Light Dependent Resistor (LDR) light sensor module that can automatically turn off the light through the resistant value received from the light Sensor, and can use the timer as a form of system development when the light becomes uncertain and occurs in the rainy season. A timer can direct the schedule to turn on and off the lights as needed.