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Implementation of Integration VaaMSN and SEMAR for Wide Coverage Air Quality Monitoring Yohanes Yohanie Fridelin Panduman; Adnan Rachmat Anom Besari; Sritrusta Sukaridhoto; Rizqi Putri Nourma Budiarti; Rahardhita Widyatra Sudibyo; Funabiki Nobuo
TELKOMNIKA (Telecommunication Computing Electronics and Control) Vol 16, No 6: December 2018
Publisher : Universitas Ahmad Dahlan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.12928/telkomnika.v16i6.10152

Abstract

The current air quality monitoring system cannot cover a large area, not real-time and has not implemented big data analysis technology with high accuracy. The purpose of an integration Mobile Sensor Network and Internet of Things system is to build air quality monitoring system that able to monitor in wide coverage. This system consists of Vehicle as a Mobile Sensors Network (VaaMSN) as edge computing and Smart Environment Monitoring and Analytic in Real-time (SEMAR) cloud computing. VaaMSN is a package of air quality sensor, GPS, 4G WiFi modem and single board computing. SEMAR cloud computing has a time-series database for real-time visualization, Big Data environment and analytics use the Support Vector Machines (SVM) and Decision Tree (DT) algorithm. The output from the system are maps, table, and graph visualization. The evaluation obtained from the experimental results shows that the accuracy of both algorithms reaches more than 90%. However, Mean Square Error (MSE) value of SVM algorithm about 0.03076293, but DT algorithm has 10x smaller MSE value than SVM algorithm.
Body Temperature and Heart Rate Monitoring System Using Fuzzy Classification Method M. Yayan Nurhadiansyah; Rahardhita Widyatra Sudibyo; Moch. Zen Samsono Hadi
International Journal of Artificial Intelligence & Robotics (IJAIR) Vol. 4 No. 2 (2022): November 2022
Publisher : Informatics Department-Universitas Dr. Soetomo

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (790.963 KB) | DOI: 10.25139/ijair.v4i2.5290

Abstract

Climbing becomes one of the extreme sports that test endurance with nature, just like in a mountainous environment. In addition to the excitement and fun that climbing provides, climbers enjoy the opportunity to view breathtaking natural scenery and breathe in the fresh air drawn directly from the surrounding environment. Because of the temperature in the cold mountains, there are frequent and common obstacles Not realized by the climbers, such as hypothermia. Hypothermia is a condition in which the body temperature drops below 35oC. When body temperature is below normal 37oC, nervous system function and other body organs will experience interference. If not soon Left untreated, hypothermia can lead to heart failure, disturbances respiratory system, and even death. To anticipate things requires a system that functions to know the condition of mountaineer health. The system to be created uses the Mamdani fuzzy logic method, which decides whether the climber is healthy. The fuzzy logic method is used for decision-making based on body temperature and heart rate values. Implementation of the system in the form of a prototype containing sensors and mini-computers located at the climbing post, with data transmission using a node sent from post x to the main post to be uploaded to the database so that it can be known by the admin or rescue team when climbers need help in critical situations. This is done so that the condition can be monitored.
IMPLEMENTASI SISTEM MONITORING PENAMPUNG AIR BERBASIS TELEGRAM DAN NODEMCU DI SEKTOR INDUSTRI UMKM Mohamad Ridwan; Ari Wijayanti; Djoko Santoso; Rahardhita Widyatra Sudibyo; Arifin Arifin; Hari Wahjuningrat Suparno; Nur Adi Siswandari; Anang Budikarso; Okkie Puspitorini; Yoedy Moegiharto; Rini Satiti; Moga Kurniajaya; Karimatun Nisa; Paramita Eka Wahyu Lestari; Via Alviana; Achmad Hildan Syahputra; Rahmadani Najwa Alfriza; Muhammad Luqmanul Chakim
BUDIMAS : JURNAL PENGABDIAN MASYARAKAT Vol 5, No 1 (2023): BUDIMAS : VOL. 5, NO.1, 2023
Publisher : LPPM ITB AAS Indonesia Surakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29040/budimas.v5i1.6583

Abstract

Pada zaman serba digital seperti saat ini, manusia mulai mengembangkan berbagai teknologi untuk memudahkan pekerjaan di segala bidang. Salah satu bidang yang membutuhkan inovasi akan perkembangan teknologi adalah bidang industri. Sektor industri yang masih belum menerapkan kemajuan teknologi terdapat pada industri UMKM (Usaha Mikro, Kecil, dan Menengah). Penerapan teknologi pada UMKM dapat digunakan untuk melakukan monitoring proses produksi agar dapat berjalan dengan baik. Pada pengabdian masyarakat ini akan dibuat alat untuk Implementasi Sistem Kontrol Penampung Air Berbasis Telegram dan NodeMCU. Alat tersebut menggunakan mikrokontroler NodeMCU ESP8266 yang di program menggunakan Bahasa C pada Arduino IDE dengan monitoring melalui Platform Thinger.io dan aplikasi Telegram. Sensor suhu, sensor ultrasonic, dan sensor turbidity akan mendeteksi air yang berasal dari sumber air secara real time dan akan mengirimkan data ke Thinger.io Cloud, lalu data akan dikirimkan ke Telegram. Terdapat 3 buah parameter yang akan dimonitoring yakni level air, suhu dan kekeruhan. Output dari alat tersebut juga akan ditampilkan pada LCD (Liquid Crystal Display) yang terpasang pada bak penampungan air.