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Integrated smart door system in apartment room based on internet Muchammad Husni; Henning Titi Ciptaningtyas; Ridho Rahman Hariadi; Irzal Ahmad Sabilla; Siska Arifiani
TELKOMNIKA (Telecommunication Computing Electronics and Control) Vol 17, No 6: December 2019
Publisher : Universitas Ahmad Dahlan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.12928/telkomnika.v17i6.12322

Abstract

Internet of Things (IoT) is technology which provides communication between machines without human intervention. There are many applications that implement IoT technology e.g. smart power, smart home, transportation management, and smart city. This paper proposes the usage of IoT to develop electronic key that can help to improve the security in apartment. Electronic key uses Android smart phone to access and control the door. Electronic key uses Raspberry pii, motor DC, webcam, microswitch, and Arduino GSM. Raspberry is used to get command from server and instruct the Arduino GSM to open or close the door and webcam is used to take picture from the environment for documentation. This research uses three steps to verify the user who want to open or close the door i.e. using username and password, bluetooth, and QR code scanner.
Mobile Security Vehicle’s based on Internet of Things Muchammad Husni; R. V. H. Ginardi; K. Gozali; R. Rahman; A. S. Indrawanti; M. I. Senoaji
Journal of Robotics and Control (JRC) Vol 2, No 6 (2021): November
Publisher : Universitas Muhammadiyah Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18196/jrc.26135

Abstract

The purpose of this research is to design and build a mobile security vehicle based on the Internet of Things (IoT) that combines to Arduino-based microcontroller, internet networks, and the needed hardware. The design is intended to monitor and control the vehicle condition and monitor the vehicle location based on IoT. This research uses hardware and software components. The hardware uses the Arduino-based microcontroller that connects to some modules. This research uses Relay Module 2 Channel HL-525 to control the vehicle machine, GPS Module Neo-7M to get the vehicle location, SIM800L Module to connect to the internet network, and ACS-712 Voltage sensor to detect the voltage in the vehicle electricity. This research uses multi-platform (web application) as the component software to monitor and control the vehicle condition and its location. The result of this research is Mobile Security Vehicle’s System Based on Arduino where the system can satisfy some functional needs such as can monitoring motorcycle location, controlling alarm, and motorcycle electricity to avoid theft through a web application that can be used in multi-platform.
Implementasi Routing Protocol DSR pada Skenario Mobility Random Waypoint dengan menggunakan Propagasi Nakagami Hasbi As Shiddi Qi; Radityo Anggoro; Muchammad Husni
Jurnal Teknik ITS Vol 6, No 2 (2017)
Publisher : Direktorat Riset dan Pengabdian Masyarakat (DRPM), ITS

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (815.639 KB) | DOI: 10.12962/j23373539.v6i2.23600

Abstract

Mobile Ad hoc Network (MANET) merupakan jaringan wireless yang berasal dari kumpulan mobile node yang topologinya dapat berubah dengan cepat dan kapan saja. Aspek yang penting dalam MANET adalah protokol rute dimana protokol  inilah yang mengatur sistem pencarian rute paket data dalam jaringan tersebut. Ada beberapa macam protokol rute pada MANET salah satunya adalah DSR. DSR merupakan pengembangan dari AODV. Perbedaan antara AODV dengan DSR adalah jumlah rute yang ditemukan dalam setiap proses pencarian rute. Dalam Tugas Akhir ini, dilakukan penelitian terhadap kinerja DSR menggunakan Network Simulator 2 (NS-2). Uji coba dilakukan dengan membuat pola traffic connection dan pola pergerakan node yang kemudian disimulasikan dengan menggunakan script DSR.tcl. Proses tersebut akan menghasilkan file otuput berupa trace file. Trace file hasil dari simulasi akan dianalisis untuk menghitung Packet Delivery Ratio (PDR), Routing Overhead (RO), dan End-to-End Delay.
Implementasi Virtual Data Center Menggungakan Linux Container Berbasis Docker dan SDN Muhammad Fikri Alauddin; Royyana Muslim Ijtihadie; Muchammad Husni
Jurnal Teknik ITS Vol 6, No 2 (2017)
Publisher : Direktorat Riset dan Pengabdian Masyarakat (DRPM), ITS

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (353.146 KB) | DOI: 10.12962/j23373539.v6i2.23755

Abstract

Software Defined Networking (SDN) adalah teknik jaringan yang berbasis aplikasi sehingga pengguna hanya tinggal menjalankan saja dan software akan menghandle konfigurasi yang diperlukan, tidak seperti teknik jaringan konvensional yang memerlukan konfigurasi dari admin untuk masalah seperti routing. Oleh karena itu sangat cocok untuk diterapkan di Data Center berbasis virtual yang membutuhkan trafik yang sangat fleksible dan akses jaringan yang on-demand. Di era modern ini, teknologi jaringan dituntut untuk akses yang semakin cepat dan semakin dinamis untuk memenuhi kebutuhan dari pengguna yang semakin banyak. Sama halnya dengan Data Center. Oleh karena itu Tugas Akhir ini mengimplementasi kan Data Center berbasis virtual menggunakan Linux Container bebasis Docker dan SDN untuk menjawab akan permintaan akses yang dinamis dan on-demand. Penggunaan Docker sebagai host dari Data Center berbasis virtual dinilai berhasil dan memang cocok untuk diterapkan. Dengan hasil performa yang dibilang berhasil dan dapat digunakan dan berjalan dengan baik. Docker terintegrasi dengan baik kedalam switch jaringan Data Center berbasis virtual yang dikontrol dengan controller yang berbasis dan menggunakan teknologi SDN.
Analisis Akurasi Prediksi Perubahan Aktivitas Pada Sistem Monitoring Aktivitas Jarak Jauh Pasien Isolasi Mandiri Berbasis IOT Annisaa Sri Indrawanti; Muchammad Husni; Khakim Ghozali
Jurnal Ilmiah Informatika Vol. 7 No. 1 (2022): Jurnal Ilmiah Informatika
Publisher : Department of Science and Technology Ibrahimy University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35316/jimi.v7i1.13-20

Abstract

Patients who contract the disease should avoid contact with other people. One way to do this is to self-isolate at home. The family of the patient who cares for the activities that are carried out in self-isolation to find out the condition of the patient's condition, his condition is improving or deteriorating. To avoid direct contact, the patient's activity, independently, can be monitored by remotely predicting changes in patient activity using an Internet of Things-based remote monitoring system for self-isolating patient activities. This cellular-based monitoring system uses an accelerometer sensor to retrieve data on changes in patient activity and analyzes the effect of several variations in the number of data samples and sliding-windows on the accuracy of the system in predicting changes in patient activity. Variations in the number of N samples tested were 4,6,8,10,20,30,40,50,60,70,80,90 and 100 samples, while the sliding-window N variation tested was 1 ,2,3,4,5,6,7,8,9 and 10 samples where there is a change in activity every 30 seconds for 330 seconds (10 changes in activity) for each number of N samples and N sliding windows. The results shown are N sample data = 6 providing the highest activity change prediction accuracy, amounting to 90.15%, while N sliding window data = 6 providing the highest activity change prediction accuracy, amounting to 92.72%.