scholarly journals Challenges of an Internet of Things-Based Health Monitoring System

2021 ◽  
Vol 23 (06) ◽  
pp. 164-169
Author(s):  
D. Arun Shunmugam ◽  
◽  
Dr. K. Ruba Soundar ◽  
M. Desiya Narayan ◽  
◽  
...  

The Internet of Things (IoT) is a cutting-edge and quickly advancing innovation wherein everything (brilliant items and keen gadgets) is connected to the web for effective correspondence between them. The web of things is an impetus for medical care and assumes a basic part in an assortment of medical services following applications. By gathering internal heat level, circulatory strain, and sugar levels, organized sensors gadgets, regardless of whether worn on the body or installed in living conditions; permit the assortment of rich information to decide a patient’s physical and psychological well-being condition. The troublesome errand in the Internet of things is conveying the gathered information to the specialist, settling on the right choices dependent on the information gathered, and advising the patient. The creator of this paper centers around an investigation of IoT-based medical care frameworks, just as promising circumstances and difficulties for IoT-based patient wellbeing checking frameworks.

Author(s):  
C.R Srinivasan ◽  
Guru Charan ◽  
P Chenchu Sai Babu

<span>Smart and connected health care is of specific significance in the spectrum of applications enabled the Internet of Things (IoT). Networked sensors, either embedded inside our living system or worn on the body, enable to gather rich information regarding our physical and mental health. In specific, the accessibility of information at previously unimagined scales and spatial longitudes combined with the new generation of smart processing algorithms can expedite an advancement in the medical field, from the current post-facto diagnosis and treatment of reactive framework, to an early-stage proactive paradigm for disease prognosis combined with prevention and cure as well as overall administration of well-being rather than ailment. This paper sheds some light on the current methods accessible in the Internet of Things (IoT) domain for healthcare applications. The proposed objective is to design and create a healthcare system centered on Mobile-IoT by collecting patient information from different sensors and alerting both the guardian and the doctor by sending emails and SMS in a timely manner. It remotely monitors the physiological parameters of the patient and diagnoses the illnesses swiftly. </span>


Author(s):  
Hareesh Kumar

The rapid growth of the Internet of Things (IoT) and cloud computing is finding is a big part of our lifestyle, planning to upgrade personal satisfaction by partnering with various shrewd gadgets, innovations, and applications. Generally, the fields of IoT and cloud computing considers the mechanization of everything around the world. Presently scientists have discovered that there is a reasonably big utilization of IoT and cloud in the field of the health care industry. In between the panoply of uses empowered by the Internet of Things (IoT), brilliant and associated health care services play a significant role. The arrangement of network sensors, either exhausted on the body or incorporated into our living environment which makes the processing of information demonstrative of our physical and emotional well-being. Such data can achieve a positive disruptive shift in the human services, collected consistently, totaled, and adequately mined. This study exhibits the significance of the Internet of Things and Cloud in the field of the Healthcare Industry.


CAHAYAtech ◽  
2020 ◽  
Vol 9 (1) ◽  
Author(s):  
Adetya Windiarto Makhmud ◽  
Tutus Praningki ◽  
Ira Luvi Indah

Drying clothes is one of the daily activities of people who use solar energy. With these conditions, people are very dependent on weather conditions that are sometimes erratic. One of the right ways is by utilizing technology, namely using an automatic clothesline using a Wemos D1Mini microcontroller, equipped with an LDR sensor that will read light intensity and the DHT11 sensor will read humidity and temperature around the environment. This tool is also based on the Internet of Things which can be accessed from anywhere as long as it is connected to the internet. Keyword: Microcontroller, LDR sensor, DHT11 sensor, Internet of Things.


2021 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Jean-Éric Pelet ◽  
Erhard Lick ◽  
Basma Taieb

Purpose This study bridges the gap between sensory marketing and the use of the internet of things (IoT) in upscale hotels. This paper aims to investigate how stimulating guests’ senses through IoT devices influenced their emotions, affective experiences, eudaimonism (well-being), and ultimately, guest behavior. The authors examined the potential moderating effects of gender. Design/methodology/approach Research conducted comprised an exploratory study, which consisted of interviews with hotel managers (Study 1) and an online confirmatory survey (n = 357) among hotel guests (Study 2). Findings The results showed that while the senses of smell, hearing and sight had an impact on guests’ emotions, the senses of touch, hearing and sight impacted guests’ affective experiences. The senses of smell and taste influenced guests’ eudaimonism. The sense of smell had a greater effect on eudaimonism and behavioral intentions among women compared to men. Research limitations/implications This study concentrated on upscale hotels located in Europe. Further research may explore the generalizability of the findings (e.g. in other cultures, comparison between high-end and low-end hotels). Practical implications Managers of upscale hotels should apply congruent sensory stimuli from all five senses. Stimuli may be customized (“SoCoIoT” marketing). IoT in hotels may be useful in the aftermath of the COVID pandemic, as voice commands help guests avoid touching surfaces. Originality/value IoT can be applied in creating customized multi-sensory hotel experiences. For example, hotels may offer unique and diverse ambiances in their rooms and suites to improve guest experiences.


Author(s):  
Jonika Lamba ◽  
Esha Jain

Cybersecurity is not just about fortification of data. It has wide implications such as maintaining safety, privacy, integrity, and trust of the patients in the healthcare sector. This study methodically reviews the need for cybersecurity amid digital transformation with the help of emerging technologies and focuses on the application and incorporation of blockchain and the internet of things (IoT) to ensure cybersecurity in the well-being of the business. It was found in the study that worldwide, advanced technology has been used in managing the flow of data and information, India should focus on maintaining the same IT-enabled infrastructure to reduce causalities in the nation and on the other hand improve administration, privacy, and security in the hospital sector. Depending on the network system, resource allocation, and mobile devices, there is a need to prioritize the resources and efforts in the era of digitalization.


2013 ◽  
Vol 756-759 ◽  
pp. 4529-4532 ◽  
Author(s):  
Hao Zeng ◽  
Yan Hui Fu ◽  
Xu Chen

Traditional Radio Frequency Identification (RFID) Tag Equipment has some problems like these: it is difficult to realize if the tag is kept out, destroyed, or taken away abnormally. It cant accurately judge where the area the tag had moved to is. Besides, it is difficult to distinguish the right of the tag in the Tag Management. To solve these issues, this paper serves with a method which is based on the Internet of Things (IOT). It mainly includes as the following: the tag is activated in the Controlled Area, the judgment of the tag access the Controlled Area, whether the tag exists in the Controlled Area or not. These methods can reform the problems that the Traditional RFID Tag Equipment has.


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