Automated Medicine Alert System

2021 ◽  
Vol 7 (2) ◽  
Author(s):  
Raghavendra Patil G E ◽  
G R Jyoti ◽  
Kratika Krishnanand Naik ◽  
Lavanya G ◽  
Manavi J M

The internet of things is a technology that connects physical objects through the internet. It has an incredible application in the field of medication that offers an assortment of answers for patients and medical services experts. This makes clinical hardware more productive, by giving checking to the patient's wellbeing. That is the reason we offer a framework known as the Automated Medicine Alert System, the proposed framework will be intended to remind patients to take as much time as is needed and to give data about the patient's wellbeing status to both the patient and the patient's overseer. Here, the patient necessities to give a medicine, the subtleties of which have been given to him by a specialist to a page, after which the framework will store the heaviness of every tablet just as the all out weight of medication. At the hour of medication admission as indicated by the GSM module, the tablet will be determined by a 16-digit LCD screen, alongside a buzzer sound. The weight change is processed with the assistance of a gadget called a load cell subsequent to taking the medication and afterward contrasted with the past complete weight. The framework will send an affirmation email, i.e, an instant message to the patient and his overseer assuming any, subsequently, broke down dependent on changes in the heaviness of tablets.

2021 ◽  
Vol 155 ◽  
pp. 107174 ◽  
Author(s):  
Jianxin Wang ◽  
Ming K. Lim ◽  
Chao Wang ◽  
Ming-Lang Tseng

2015 ◽  
Vol 11 (6) ◽  
pp. 28 ◽  
Author(s):  
Ken Cai ◽  
Fenglian Tie ◽  
Haoran Huang ◽  
Hanhui Lin ◽  
Huazhou Chen

By analyzing the current situation of experimental platforms which is based on the Internet of Things (IOT) and the cultivation of talents, we established the talents' cultivating orientation and experiment platform for innovation. In accordance with the requirements of a students' practical and creative ability curriculum, the method of modularization was adopted to design this platform. With this, the platform can basically satisfy the needs of the varying teaching experiments, which can increase opportunities for the students on their comprehensive application. The platform was widely used in experimental and practice teaching in the past three years, such as synthetic experiment, graduate programs, and practice project in Zhongkai University of Agriculture and Engineering, Guilin University of Technology etc. Result shows that the innovation experimental platform has broad application prospects, and effectiveness to meet the requirements of students' in-depth learning and research of IOT technologies. Meanwhile, the platform expanded the students' basic understanding of IOT and improved their innovation.


Author(s):  
Varsha Sharma ◽  
Vivek Sharma ◽  
Nishchol Mishra

Recently, Internet of Things (IoT) has aroused great interest among the educational, scientific research, and industrial communities. Researchers affirm that IoT environments will make people's daily life easier and will lead to superior services, great savings as well as a nifty use of resources. Consequently, IoT merchandise and services will grow exponentially in the upcoming years. The basic idea of IoT is to connect physical objects to the Internet and use that connection to provide some kind of useful remote monitoring or control of those objects. The chapter presents the overall IoT vision, the technologies for achieving it, IoT challenges and its applications. This chapter also attempts to describe and analyze threat types for privacy, security and trust in IoT as well as shows how big data is an important factor in IoT. This chapter will expose the readers and researchers who are interested in exploring and implementing the IoT and related technologies to the progress towards the bright future of the Internet of Things


Author(s):  
Kijpokin Kasemsap

This article determines the overview of the Internet of Things (IoT) and the multifaceted applications of the IoT. The IoT is made up of hardware and software technologies. The IoT describes a world in which everyday objects are connected to a network so that data can be shared. The IoT refers to the networking of physical objects through the use of embedded sensors, actuators, and other devices that can collect and transmit information about the objects. The data amassed from these devices can be analyzed to optimize products, services, and operations. For the IoT to flourish, interoperability must apply across all parts of the system, including the transmission networks and the data being transmitted. The IoT enables the multifaceted applications ranging from the micro to the macro, and from the trivial to the critical perspectives.


History has always been a great indicator of past behaviour as well as of future trends. However, when you think of what future jobs may look like, you do not certainly expect to find a plausible response in the past. Technologies and scientific advancements in general make it almost impossible to predict what you will be required to know in order to get—or maintain—your job in the next six months, let alone in the next couple of years. Whilst disruption seems such a new concept nowadays, we will learn that disruptive innovations have always been part of our story. The authors look at the major industrial revolutions known to humans and discuss patterns to help us prepare for the forthcoming future.


Author(s):  
Jathan Sadowski ◽  
Frank Pasquale

There is a certain allure to the idea that cities allow a person to both feel at home and like a stranger in the same place. That one can know the streets and shops, avenues and alleys, while also going days without being recognized. But as elites fill cities with “smart” technologies — turning them into platforms for the “Internet of Things” (IoT): sensors and computation embedded within physical objects that then connect, communicate, and/or transmit information with or between each other through the Internet — there is little escape from a seamless web of surveillance and power. This paper will outline a social theory of the “smart city” by developing our Deleuzian concept of the “spectrum of control.” We present two illustrative examples: biometric surveillance as a form of monitoring, and automated policing as a particularly brutal and exacting form of manipulation. We conclude by offering normative guidelines for governance of the pervasive surveillance and control mechanisms that constitute an emerging critical infrastructure of the “smart city.”


Author(s):  
Antonio Carlos Bento

This study presents the results of an experimental research with the use of 3D resources, such as the creation and printing of physical objects, that can serve as interface for 3D devices, The creation of solutions for the internet of things, requires, besides the knowledge of programming, electronics, internet and computing, also requires the creation of parts, which are often complex, for coupling and manipulation of devices to the internet of things. Personal experience during computer classes was the main motivation for the development of this work, demonstrating how to create solutions that can meet the different projects that involve the internet of things. In addition to presenting the results of a comparison between some tools evaluated during the research. The results were collected during the creation of the objects in 3D systems, besides presenting the results in pieces that were printed with this technology, these results demonstrated the possibility of creating viable solutions and that can serve as a model for new projects, facilitating the development of solutions to the internet of things.


2020 ◽  
Vol 4 (2) ◽  
pp. 90
Author(s):  
Tanweer Alam

In this paper, we propose a mobility framework for connecting the physical things in wireless ad hoc sensor networks. Our area of study is the internet of things by using an ad hoc sensor network. Our purpose in this study is to create a mobility framework for the internet of things. For example- how we connect many physical objects and give them a sense of sensing each other in an ad hoc environment. We can connect different physical objects in a framework of an ad hoc sensor network. Our main contribution is a new methodology for simulating mobility physical objects for the internet of things. Our methodology uses the correct and efficient simulation of the desired study and can be implemented in a framework of ad hoc sensor networks. Our study will generate a new framework for solving the issue of connectivity among physical objects. The proposed mobility framework is feasible to run among physical objects using the ad hoc sensor network.


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