cover
Contact Name
Anderias Eko Wijaya
Contact Email
ekowjy09@yahoo.com
Phone
+62260417853
Journal Mail Official
admin@jurnalstmiksubang.ac.id
Editorial Address
Jalan Marsinu No.5 Subang, Jawa Barat, Pos. 41212
Location
Kab. subang,
Jawa barat
INDONESIA
Jurnal Teknologi Informasi dan Komunikasi
ISSN : 22524517     EISSN : 27237249     DOI : https://doi.org/10.47561/a.v13i1
Jurnal Teknologi Informasi dan Komunikasi menerbitkan kajian ilmiah hasil penelitian dan pemikiran di bidang ilmu dan teknologi komputer yang didistribusikan sebagai sumber referensi bagi para akademisi di bidang Ilmu dan Teknologi Komputer. Jurnal Teknologi Informasi dan Komunikasi menerima artikel ilmiah dengan cakupan penelitian: 1. Internet of Things 2. Machine Learning 3. Data Mining 4. Big Data 5. Sistem Pengambilan Keputusan 6. Sistem Artificial Intelligence 7. Jaringan Komputer 8. Sistem Informasi
Articles 5 Documents
Search results for , issue "Vol 16 No 1 (2023): April" : 5 Documents clear
IMPLEMENTASI KONSEP ROUTING PADA SISTEM PENGELOLAAN DATA OBAT DI PUSKESMAS Permana, Eka; Ningsih, Riska
Jurnal Teknologi Informasi dan Komunikasi Vol 16 No 1 (2023): April
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v16i1.238

Abstract

This research aims to implement the routing concept in the drug data management system at Community Health Centers (Puskesmas) to enhance efficiency and accuracy in drug distribution. As primary healthcare service centers, Puskesmas require a system that can optimize the drug data management process to provide better healthcare services to the community. The research methodology involves analyzing system requirements, designing a suitable routing concept, and implementing it into the drug data management system at Puskesmas. The routing concept considers various factors such as distance, time, and drug availability to determine the optimal route for drug distribution to different units or rooms within the Puskesmas. The expected outcomes of this research include a positive contribution to the efficiency of drug distribution at Puskesmas, reducing drug handling time, and minimizing the possibility of errors in drug stock management. The implementation of the routing concept in this system is anticipated to provide an effective and efficient solution to drug management at Puskesmas, ultimately improving the quality of healthcare services for the community.
SISTEM MONITORING KUMBUNG JAMUR TIRAM OTOMATIS BERBASIS IoT (Internet of Things) MENGGUNAKAN METODE K-NEAREST NEIGHBOUR Wijaya, Anderias Eko; Sobari, Dicky Iskandar; Munandar, Haris
Jurnal Teknologi Informasi dan Komunikasi Vol 16 No 1 (2023): April
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v16i1.239

Abstract

In response to the growing market demand for oyster mushrooms, effective monitoring of the growth environment becomes crucial. This research aims to develop an automated Internet of Things (IoT)-based monitoring system for oyster mushroom cultivation, utilizing Wemos D1 R1 hardware, DHT22 temperature and humidity sensor, LM35 temperature sensor, and the K-Nearest Neighbour (KNN) method for data analysis. The IoT platform employed in this study is Antares. The system is designed to monitor real-time temperature and humidity within the mushroom cultivation chamber. The DHT22 sensor is employed for simultaneous measurement of air temperature and humidity, while the LM35 sensor gauges the soil temperature in the mushroom growth substrate. Data collected by these sensors are automatically transmitted to the Antares platform through Wemos D1 R1 via WiFi connectivity. The K-Nearest Neighbour (KNN) method is applied to analyze the accumulated temperature and humidity data. KNN provides the capability to identify patterns and trends in oyster mushroom growth based on environmental conditions. The results of this analysis offer valuable insights for oyster mushroom farmers to optimize growth conditions and enhance harvest yields. Through the implementation of this system, it is anticipated that efficiency and productivity in oyster mushroom cultivation will be improved. This IoT-based automated monitoring system provides an effective and practical solution for real-time monitoring of oyster mushroom growth conditions, offering farmers the opportunity to take prompt and informed actions to enhance their harvest yields.
IMPLEMENTASI SISTEM PENGENDALI WASTAFEL CUCI TANGAN BERBASIS IoT MENGGUNAKAN PLATFORM BLNYK Udoyono, Kodar; Rizky, Muhammad Alif
Jurnal Teknologi Informasi dan Komunikasi Vol 16 No 1 (2023): April
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v16i1.240

Abstract

The enhancement of cleanliness and sanitation has become a paramount concern in modern society, particularly in the face of a global pandemic. In this context, this research proposes and implements an Internet of Things (IoT)-based handwashing sink control system using the BLNYK platform, ESP8266 module, infrared proximity sensor E-18-DNK, solenoid valve DC 12V, and LM259 stepdown. The system is designed to provide an efficient and hygienic handwashing experience. The ESP8266 module serves as the central brain connected to the BLNYK platform, enabling users to remotely access and control the sink via mobile devices or computers. The infrared proximity sensor E-18-DNK detects the presence of user hands, triggering the solenoid valve DC 12V to automatically dispense water. Additionally, the LM259 stepdown is utilized to regulate voltage and optimize power consumption, making the system energy-efficient. Sink usage data and usage statistics can be accessed through the BLNYK platform, facilitating efficient monitoring and analysis. Test results demonstrate the system's reliability in accurately detecting hands and providing a swift response in opening the solenoid valve. Furthermore, the implementation of the LM259 stepdown successfully optimizes the power consumption of the system, making it an energy-efficient solution. Thus, this system can serve as a model for further development in creating IoT-based intelligent solutions to enhance cleanliness and sanitation in various environments, including households, public spaces, and healthcare facilities.
MODEL RUMAH DIGITAL BERBASIS ARDUINO UNO MENGGUNAKAN MIKROKONTROLER ATMEGA 328P Hermawan, Rian
Jurnal Teknologi Informasi dan Komunikasi Vol 16 No 1 (2023): April
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v16i1.241

Abstract

The vulnerability of homeowners is a significant factor in various criminal activities, such as forgetting to lock doors or leaving the house with lights off. Therefore, it is necessary to design a digital home that allows homeowners to control their homes remotely. This research aims to build and enhance a smart home, which has been previously studied. Through this development, the smart home transforms into a digital home by adding several features. The features include Home Door Security, Home Temperature Monitoring, and Home Appliance Control via SMS. The digital home is expected to be beneficial in preventing crimes and addressing negligence-related incidents. By providing access codes to unlock doors, it helps prevent unauthorized entry, enhancing home security. Additionally, it addresses safety concerns related to negligence, such as electrical short circuits or gas leaks that may lead to fires. The digital home can provide immediate assistance by reacting to abnormal temperatures detected by sensors, activating fans to normalize the temperature. If the temperature remains above the specified limit, a danger alarm will sound, indicating an issue inside the house. Another function is the ability to control home appliances remotely via text messages (SMS) when the homeowner is away.
IMPLEMENTASI METODE SAW (SIMPLE ADDITIVE WEIGHTING) untuk MENENTUKAN PRIORITAS KEBERSIHAN TOILET SEKOLAH BERBASIS Internet of Things Wijaya, Anderias Eko; Hakim, Muhammad Azizul
Jurnal Teknologi Informasi dan Komunikasi Vol 16 No 1 (2023): April
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v16i1.242

Abstract

This research proposes the implementation of the Simple Additive Weighting (SAW) method as an approach to determine priorities for school toilet cleanliness based on IoT. The system integrates temperature, humidity, and ammonia gas sensors as key indicators to measure the cleanliness condition of toilets. The SAW method is employed to calculate the relative weight of each parameter, which is then used to assign priority scores. The system operates by utilizing temperature sensors to identify the toilet's environmental temperature, humidity sensors to measure humidity levels, and ammonia gas sensors to detect ammonia concentration, a crucial indicator of toilet cleanliness. Data from these sensors are collected and processed using the SAW method, enabling the automatic determination of toilet cleanliness priorities. The success of this implementation is tested through simulations and field testing. Experimental results demonstrate that the system is capable of providing priority scores with high accuracy, allowing for more efficient management of toilet cleanliness. Other advantages include the system's ability to provide real-time notifications to relevant parties through the IoT platform, facilitating prompt corrective actions. This research contributes to the development of intelligent solutions for school toilet cleanliness management, integrating IoT technology and the SAW method to provide a measurable and effective approach. With the adoption of this system, it is expected to enhance the quality of school toilet sanitation, support student health, and optimize school facility management.

Page 1 of 1 | Total Record : 5