2026· E3S Web of Conferences· Vol 723, pp. 04005· 0 citations· 3 references
TL;DR
Experimental results indicate that the design of a smart medicine cabinet system based on a microcontroller platform, such as STM32, integrated with IoT and AI technologies to automate medication dispensing is particularly beneficial for supporting elderly individuals and preventing cross-infection in hospital environments.
Abstract
In the context of increasing pressure on healthcare systems, the application of automation and artificial intelligence (AI) has become a key solution for optimizing healthcare delivery processes. This study proposes the design of a smart medicine cabinet system based on a microcontroller platform, such as STM32, integrated with IoT and AI technologies to automate medication dispensing. The system employs a camera and authentication algorithms, including facial recognition or PIN-based verification, in combination with image processing techniques to ensure that medication is delivered to the correct patient while also supporting the assessment of the patient’s current condition. Through appropriate model training, the cabinet is expected to identify the patient’s health status by analyzing visual features extracted from images, particularly skin-related characteristics. With a hardware architecture comprising servo motors for compartment control, an alarm speaker, and a display interface, the smart cabinet not only reminds patients to take their medication but also assists healthcare personnel in remotely managing treatment data via a mobile application. Experimental results indicate that the system operates stably, minimizes medication-related errors, reduces the distance between hospitals and patients, and is particularly beneficial for supporting elderly individuals and preventing cross-infection in hospital environments.
Manual medication dispensing in pharmacies remains prone to human errors and is time-intensive, particularly under high patient loads, while existing commercial automation solutions are cost-prohibitive for small to medium-sized pharmacy settings. This paper presents the design and implementation of a cost-effective sm...
Saja Sadiq Bakhit, Saleem Lateef, Ali A. Al-Naji· Jurnal Engineering· 0 citations
This paper presents the design and implementation of an automated Smart Medicine Dispenser System using the ESP32 microcontroller integrated with IoT capabilities. The system addresses the critical challenge of medication non-adherence by automating the dispensing process and providing real-time reminders through multi...
Om Kokane, Krushna Kamble, A. Kadam et al.· International Journal of Sci...· 0 citations
This study represents the design and development of an access control system that includes accurate detection of essential PPE items, integration of facial recognition for identity verification, real-time monitoring of video feeds, and an intuitive user interface for security personnel to manage access and compliance e...
Mariam Mesfer, Aoosh Matar, Reem Saif et al.· IAES International Journal o...· 0 citations
This research is motivated by the lack of availability of electrocardiography (ECG) in healthcare facilities. The aim is to design, build, and test an IoT-based, portable and low-cost heart rate or ECG signal monitoring system that displays data in real-time. The system is designed using Blender and Fritzing for circui...
A. Yuniati, Muhammad Habib Kurnianto, Danish Zaky Dhiyaulhaq et al.· Positron· 0 citations
This project seeks to create and develop a measurement system utilizing artificial intelligence (AI) technology to facilitate applications in medical procedures, specifically for assessing wound size to improve treatment planning and decision-making. The implemented system utilizes the You Only Look Once (YOLO) v8 mode...
Pariwat Imura, Anantasak Wongkumheang, Phichitphon Chotikunnan et al.· International Journal of Onl...· 0 citations
Results show that combining scheduled dispensing with presence detection and independent remote alerting can meaningfully reduce missed and incorrect doses without requiring an internet connection or a smart phone application.
M. Srinivasa, M. Hamza, Preetham P et al.· International journal of res...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.