scholarly journals PEMANFAATAN APRS (AUTOMATIC POSITION REPORTING SYSTEM ) BERBASIS IoT (INTERNET Of THINGS) SEBAGAI MEDIA PENGAMATAN CUACA

2020 ◽  
Vol 1 (1) ◽  
pp. 101
Author(s):  
Muhamad Irsan ◽  
Fiqih Ismawan

ABSTRACTThis paper reports on the potential use of Automatic Packet Reporting System (APRS) technology as weather observations. Observations and measurements made through the process of recording information captured at the APRS data reception station on the aprs.fi site are based on the coordinate points monitored, especially in the Greater Jakarta area. This study aims to have a data package taken at the aprs.fi site reported in real time at each coordinate point believed to be able to be used as information to predict early weather observations based on system requirements. The method will be used by observing and analyzing potential APR system users based on the number and measurement of data by the APRS Internet System (APRS-IS) system on the aprs.fi site. The results showed high reliability on the use of IoT technology in the Automatic PacketReporting System (APRS) as a weather observation, measurement of air humidity, directional pressure can be the current solution. Keywords: APRS;  IoT; humidity; weather monitoring;  ABSTRAKPenelitian ini melaporkan tentang potensi penggunaan teknologi Automatic Packet Reporting System (APRS) sebagai pengamatan cuaca. Pengamatan dan pengukuran yang dilakukan melalui proses perekaman informasi yang ditangkap di stasiun penerimaan data APRS pada situs aprs.fi berdasarkan titik koordinat yang terpantau khususnya di wilayah Jabodetabek. Penelitian ini bertujuan dengan adanya paket data yang diambil pada situs aprs.fi yang dilaporkan secara real time pada tiap titik koordinat diyakini mampu dijadikan informasi untuk memprediksi pengamatan cuaca secara dini berdasarkan kebutuhan sistem. Metode yang akan digunakan dengan melakukan observasi serta menganalisis potensi pengguna sistem aprs berdasarkan jumlah dan pengukuran data oleh sistem APRS Internet System (APRS-IS) pada situs aprs.fi. Hasil penelitian menunjukkan adanya reliabilitas yang tinggi pada penggunaan teknologi IoT pada Automatic PacketReporting System (APRS)sebagai pengamatan cuaca, pengukuran kelembaban udara, tekanan arah mata angin dapat menjadi solusi saat ini.. Kata Kunci : APRS; IoT; kelembaban udara; monitoring cuaca;

2019 ◽  
Author(s):  
Peter R Chai ◽  
Haipeng Zhang ◽  
Guruprasad D Jambaulikar ◽  
Edward W Boyer ◽  
Labina Shrestha ◽  
...  

BACKGROUND Restroom cleanliness is an important factor in hospital quality. Due to its dynamic process, it can be difficult to detect the presence of dirty restrooms that need to be cleaned. Using an Internet of Things (IoT) button can permit users to designate restrooms that need cleaning and in turn, allow prompt response from housekeeping to maintain real-time restroom cleanliness. OBJECTIVE This study aimed to describe the deployment of an IoT button–based notification system to measure hospital restroom cleanliness reporting system usage and qualitative feedback from housekeeping staff on IoT button use. METHODS We deployed IoT buttons in 16 hospital restrooms. Over an 8-month period, housekeeping staff received real-time notifications and responded to button presses for restroom cleaning. All button presses were recorded. We reported average button usage by hospital area, time of day, and day of week. We also conducted interviews with housekeeping supervisors and staff to understand their acceptance of and experience with the system. RESULTS Over 8 months, 1920 requests to clean restrooms in the main hospital lobby and satellite buildings were received. The hospital lobby IoT buttons received over half (N=1055, 55%) of requests for cleaning. Most requests occurred in afternoon hours from 3 PM to midnight. Requests for cleaning remained stable throughout the work week with fewer requests occurring over weekends. IoT button use was sustained throughout the study period. Interviews with housekeeping supervisors and staff demonstrated acceptance of the IoT buttons; actual use was centered around asynchronous communication between supervisors and staff in response to requests to clean restrooms. CONCLUSIONS An IoT button system is a feasible method to generate on-demand request for restroom cleaning that is easy to deploy and that users will consistently engage with. Data from this system have the potential to enable responsive scheduling for restroom service and anticipate periods of high restroom utilization in a hospital.


Sensors ◽  
2021 ◽  
Vol 21 (24) ◽  
pp. 8363
Author(s):  
Muhammad Zubair Islam ◽  
Shahzad ◽  
Rashid Ali ◽  
Amir Haider ◽  
Hyungseok Kim

With the inclusion of tactile Internet (TI) in the industrial sector, we are at the doorstep of the tactile Industrial Internet of Things (IIoT). This provides the ability for the human operator to control and manipulate remote industrial environments in real-time. The TI use cases in IIoT demand a communication network, including ultra-low latency, ultra-high reliability, availability, and security. Additionally, the lack of the tactile IIoT testbed has made it more severe to investigate and improve the quality of services (QoS) for tactile IIoT applications. In this work, we propose a virtual testbed called IoTactileSim, that offers implementation, investigation, and management for QoS provisioning in tactile IIoT services. IoTactileSim utilizes a network emulator Mininet and robotic simulator CoppeliaSim to perform real-time haptic teleoperations in virtual and physical environments. It provides the real-time monitoring of the implemented technology parametric values, network impairments (delay, packet loss), and data flow between operator (master domain) and teleoperator (slave domain). Finally, we investigate the results of two tactile IIoT environments to prove the potential of the proposed IoTactileSim testbed.


2019 ◽  
Vol 6 (1) ◽  
pp. 39-51
Author(s):  
Endang Sri Rahayu ◽  
Nurul Amalia

Diabetes merupakan penyakit “silent killer” yang ditandai dengan peningkatan kadar glukosa darahdan kegagalan sekresi insulin. World Health Organization (WHO) pada tahun 2016 menyatakanbahwa diabetes menduduki urutan ke-6 sebagai penyakit mematikan di Indonesia. Sehingga upayapencegahan dan penanganan diabetes perlu mendapat perhatian yang serius. Internet of Things (IoT)dapat dijadikan sarana penunjang dalam penanganan penyakit diabetes. Inovasi ini memungkinkanperangkat perawatan kesehatan terhubung dengan jaringan internet, sehingga data pasien dapatdiperbaharui dan diakses secara real-time. Selain mempermudah akses, penggunaan IoT juga akanmemberikan nilai tambah pada efisiensi biaya pelayanan kesehatan. Penelitian ini bertujuan untukmerancang software sistem monitoring gula darah berbasis web yang terintegrasi dengan IoT,sehingga pasien dapat melakukan pemeriksaan, konsultasi dengan dokter dan melihat data rekammedis dari jarak jauh. Data hasil pemeriksaan akan disimpan didalam cloud dan ditampilkan secaraonline. Penelitian ini menggunakan Node MCU ESP8266 sebagai mikrokontroller yang telahdilengkapi dengan modul WiFi, Thingspeak sebagai cloud, aplikasi online dengan “Diamons” sebagaidashboard yang mampu menampilkan presentasi data grafis, dibangun dengan bahasa HypertextPreprocessor (PHP) sebagai bahasa pemogramannya. Penelitian ini akan melibatkan pihak medisdalam pengambilan keputusan. Umpan balik yang diberikan kepada pasien berupa anjuran sepertiresep obat, pola makan, dan kegiatan fisik yang harus dilakukan oleh pasien.


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