Benny Susanto
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Design of E-Rent System with an Object Oriented Analysis and Design Method (Case Study at PT XYZ Rent) Dinar Rahayu; Anwar Hilman; Benny Susanto; Yopi Nugraha
RISTEC : Research in Information Systems and Technology Vol 2, No 2 (2021): Research in Information Systems and Technology
Publisher : Institut Pendidikan Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (639.663 KB) | DOI: 10.31980/ristec.v2i2.1907

Abstract

PT XYZ Tbk is the largest transportation rental service company in Indonesia. However, the process of submitting a lease from a customer still takes a long time and a lot of resources because it is done manually. It's very important for an organization to facilitate the business process with digitalization and to change physical files and documents to digital files (paperless) in the form of e-documents accompanied by e-digital signatures so that the process becomes faster, more effective and efficient. Therefore, this research purpose is to propose an E-Rent vehicle rental system to digitalize the current business processes. To determine the proposed design, research was conducted by analyzing user requirements, system requirements and conducting design modeling using the Object Oriented Analysis and Design method. Based on the result of the research conducted, it is expected the proposed system can meet the needs of the users in the vehicle rental process., both the users in the company and the customers.
Enterprise Architecture Planning for College Information Systems using the TOGAF-ADM Framework and ISO 27001 Anwar Hilman; Dinar Rahayu; Benny Susanto
RISTEC : Research in Information Systems and Technology Vol 3, No 1 (2022): Research in Information Systems and Technology
Publisher : Institut Pendidikan Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (348.701 KB) | DOI: 10.31980/ristec.v3i1.1903

Abstract

The planning for the development of Information Systems and Technology is carried out with the main goal of realizing the Vision and Mission of Higher Education. The Information System design framework used is TOGAF (The Open Group Architecture Framework) - ADM (Architecture Development Methode), in that framework consists of several steps of implementing a representative architectural design to be used in architectural design at the Toyota Indonesia Community Academy which focuses on Business, Data, Applications and Technology. For the information system security management system, TOGAF-ADM can collaborate with ISO 27001:2013, where when we plan the development of the enterprise information system architecture for universities, we must also focus on information system security in accordance with the information system security system contained in the ISO 27001 :2013. By using a combination framework between TOGAF-ADM and ISO 27001, it is very appropriate to be used as a method for planning Enterprise Architecture in Higher Education that prioritizes business, applications and technology and adopts an information security management system from ISO 27001.
Desain dan Simulasi Gate Otomatis untuk Koridor Rumah Sakit Menggunakan Platform IoT Berbasis ESP8266 untuk Keamanan dan Efisiensi Danang Purnomo; Indra Fauzi Idris; Muhamad Abdul Aziz; Meinawati Meinawati; Benny Susanto; Nandi Priatna
Jurnal Publikasi Teknik Informatika Vol. 4 No. 2 (2025): Mei : Jurnal Publikasi Teknik Informatika
Publisher : Lembaga Pengembangan Kinerja Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jupti.v4i2.5140

Abstract

This study proposes the design and implementation of a smart hospital corridor gate prototype utilizing the ESP8266 microcontroller and Internet of Things (IoT) technology to enhance access control and visitor monitoring. With increasing foot traffic in hospitals, effective access management is crucial to prevent unauthorized entry, ensure safety, and maintain operational efficiency. The proposed system uses the ESP8266 as the main controller, enabling real-time monitoring and data transmission over a wireless network. The system integrates Radio Frequency Identification (RFID) technology to automate the identification process. Visitors are required to carry RFID cards or tags, which are scanned upon entry via an RFID reader installed at the gate. The captured data is then transmitted to a centralized server for real-time monitoring and storage, allowing hospital staff to efficiently track visitor activity. Additionally, to support health screening, the system incorporates a temperature sensor for automatic detection of body temperature and a motion-based servo sensor to detect visitor presence and movement in restricted areas. These sensor readings are also transmitted to the server and displayed through an integrated dashboard interface, providing clear and accessible information to hospital staff. Experimental results demonstrate that the system effectively accelerates visitor data acquisition, enhances surveillance, and supports early detection of health conditions. The integration of IoT and sensor-based automation enables hospitals to implement a more secure and responsive access control mechanism. This prototype holds significant potential for further development in building intelligent healthcare infrastructure and can be adapted for broader applications in environments that require stringent monitoring protocols.