A Research Study on Event Prediction in IoT Based Upon WBAN

Author(s):  
Krittika Singh

The Internet of things is the internetworking of physical devices, vehicles, buildings, and other items—embedded with electronics, software, sensors, actuators, and network connectivity that enable these objects to collect and exchange data. The IoT allows objects to be sensed and/or controlled remotely across existing network infrastructure, creating opportunities for more direct integration of the physical world into computer-based systems, and resulting in improved efficiency, accuracy and economic benefit in addition to reduced human intervention. In this research an expert system based upon the IOT is developed in which the next event in the flight schedules due to any kind of medical emergencies is to be predicted. For this the medical data of all the patients are to be collected through WBAN.

2018 ◽  
Vol 2 (3) ◽  
Author(s):  
Himanshu Shah

Many enterprises are considering, or are already, deploying Internet of Things (IoT) solutions,1 but IoT deployments have seen a dark side; one where implementation is partially completed or unsuccessful, which kills the business case driver.2 This article reviews the challenges one might experience and how to mitigate them. What is Internet of Things? The Internet of Things is the network of physical objects—devices, vehicles, buildings and other items embedded with electronics, software, sensors, and network connectivity—that enables these objects to collect and exchange data.


With the evolution of the Internet and related technologies, there has been an evolution of new paradigm, which is the Internet of Things (IoT). IoT is the network of physical objects, such as devices, embedded with electronics, software, sensors, and network connectivity that enables these objects to collect and exchange data. In the IoT, a large number of objects are connected to one another for information sharing, irrespective of their locations (Corcoran, 2016). Even though the IoT was defined at 1999, the concept of IoT has been in development for decades. As the technology and implementation of the IoT ideas move forward, different views for the concept of the IoT have appeared (Ma, 2011). Based on different views, in this book, the IoT is defined as a kind of modern technology, implicating machine to machine communications and person to computer communications will be extended to everything from everyday household objects to sensors monitoring the movement. Currently, we can see a few key areas of focus for the Internet of Things (IoT) that will require special attention over the course of the next decade on the part of computer science, energy technology, networks, wireless communication, and system platform. There are already a number of implementation case studies emerging from companies across a range of industry sectors.


2020 ◽  
pp. 550-568
Author(s):  
László Lengyel ◽  
Péter Ekler ◽  
Imre Tömösvári ◽  
Tamás Balogh ◽  
Gergely Mezei ◽  
...  

The Internet of Things (IoT) is the network of physical objects embedded with electronics, software, sensors, and network connectivity, which enables these objects to collect and exchange data. The chapter introduces the Model-driven Multi-Domain IoT concept and provides a method and a supporting framework. Multi-Domain IoT as the actual frontier for innovation, competition, and productivity. The method supports effective service and application development and therefore covers connected devices, data collection, data access and complex analytics. The efficiency of the method and the framework is confirmed by several projects. Selected parts of these projects are introduced as innovation projects and case studies.


Author(s):  
László Lengyel ◽  
Péter Ekler ◽  
Imre Tömösvári ◽  
Tamás Balogh ◽  
Gergely Mezei ◽  
...  

The Internet of Things (IoT) is the network of physical objects embedded with electronics, software, sensors, and network connectivity, which enables these objects to collect and exchange data. The chapter introduces the Model-driven Multi-Domain IoT concept and provides a method and a supporting framework. Multi-Domain IoT as the actual frontier for innovation, competition, and productivity. The method supports effective service and application development and therefore covers connected devices, data collection, data access and complex analytics. The efficiency of the method and the framework is confirmed by several projects. Selected parts of these projects are introduced as innovation projects and case studies.


Author(s):  
Ch Rupa

The internet of things is the internetworking of physical devices, vehicles, buildings, and other items embedded with electronics, software, sensors, and network connectivity that enable these objects to collect and exchange data. Security has become an important issue everywhere. In current days, security is becoming necessary as the possibilities of attacks and threats are increasing day by day. In this situation, specific sensitive premises should monitor by a secure alert system with IoT-based advanced technology in order to prevent the threats and attacks on persons or system assets by intruders. The purpose of this system is to notify the use of the intruder's presence at premises and send alert messages to the authority people who help to take prevention actions as well as detection if in misfire situations. This notification will be helpful to know about intruder's presence even if right persons are away from the location.


Author(s):  
Sungwook Kim

With the evolution of the Internet and related technologies, there has been an evolution of new paradigm, which is the Internet of Things (IoT). IoT is the network of physical objects, such as devices, embedded with electronics, software, sensors, and network connectivity that enables these objects to collect and exchange data. In the IoT, a large number of objects are connected to one another for information sharing, irrespective of their locations (Corcoran, 2016). Even though the IoT was defined at 1999, the concept of IoT has been in development for decades. As the technology and implementation of the IoT ideas move forward, different views for the concept of the IoT have appeared (Ma, 2011). Based on different views, in this book, the IoT is defined as a kind of modern technology, implicating machine to machine communications and person to computer communications will be extended to everything from everyday household objects to sensors monitoring the movement. Currently, we can see a few key areas of focus for the Internet of Things (IoT) that will require special attention over the course of the next decade on the part of computer science, energy technology, networks, wireless communication, and system platform. There are already a number of implementation case studies emerging from companies across a range of industry sectors.


2021 ◽  
Vol 7 ◽  
pp. 65-70
Author(s):  
Tsvetelina Simeonova

The aim of the work is to consider and compare the features of distributed systems, SCADA and IIoT. Both SCADA and IoT include sensors and data collection. Although they differ in many respects, they share a common goal. The idea of a smart grid leads to the integration of SCADA and IoT. SCADA is useful for monitoring and managing installations or industrial equipment. The Internet of Things is a collection of physical devices with different implementations, software upgrades, sensors, actuators, and network connectivity, all of which work together to enable objects to connect and exchange data. The focus of the article is the consideration, as distributed systems and in comparative terms, of the development of industrial technologies IoT and SCADA. The presentation will include a summary of the characteristics of these two technologies and a structural-functional analysis of the efficiency in the integration of the latest generations of SCADA systems in the functionality of IoT. The possibilities for integration are shown, as well as the prerequisites for this. The results can be used as recommendations in the areas of design and operation.


2021 ◽  
Vol 83 (4) ◽  
pp. 100-111
Author(s):  
Ahmad Anwar Zainuddin ◽  

Internet of Things (IoT) is an up-and-coming technology that has a wide variety of applications. It empowers physical objects to be organized in a specialized framework to grow its convenience in terms of ease and time utilization. It is to convert the thought of bridging the crevice between the physical world and the machine world. It is also being use in the wide range of the technology in this current situation. One of its applications is to monitor and store data over time from numerous devices allows for easy analysis of the dataset. This analysis can then be the basis of decisions made on the same. In this study, the concept, architecture, and relationship of IoT and Big Data are described. Next, several use cases in IoT and big data in the research methodology are studied. The opportunities and open challenges which including the future directions are described. Furthermore, by proposing a new architecture for big data analytics in the Internet of Things, this paper adds value. Overall, the various types of big IoT data analytics, their methods, and associated big data mining technologies are discussed.


Author(s):  
Sree Naga Raja Sekhar Mallela

Abstract: The most common buzzwords in the world is “The Internet of things” (IoT) and IOT describes the network of physical objects, so known as, "things" those are rooted with sensors in the devices, application software, technologies that is used for the resolution of connecting one end to another end and exchanging information with other devices and systems over the Internet. The IoT 5G technologies can also be used in journalism and the primary focus is to increase M2M interaction of mass communication devices. One way it is “ubiquitous computing” can occur using any device, in any location, and in any format. The Internet of Things (IoT) is all about small cost sensors grabbing data to communicate with one device to another device using cloud solutions. Coming to the 5th generation mobile network. We have already started using 4G networks and as we know that, start with 1G, 2G, 3G, and 4G networks. The 5th generation network is going to enable an upcoming new network that will associate virtually every person globally connected and everything organized including IoT devices, objects and machines. Central communication and Journalism is the activity of gathering right information, evaluating, generating, and presenting broadcast information. It is high time to start using IOT Technology using 5th generation high-speed network connectivity devices to communicate or data transfer in the area of journalism. Keywords: IOT – Internet Of Things, 5G- Fifth Generation in data network, JMC – Journalism and Mass Communications, M2M – Machine to Machine, Cloud , Artificial intelligence and Machine Learning.


Author(s):  
Mikael Wiberg

Computing is increasingly intertwined with our physical world. From smart watches to connected cars, to the Internet of Things and 3D-printing, the trend towards combining digital and analogue materials in design is no longer an exception, but a hallmark for where interaction design is going in general. Computational processing increasingly involves physical materials, computing is increasingly manifested and expressed in physical form, and interaction with these new forms of computing is increasingly mediated via physical materials. Interaction Design is therefore increasingly a material concern. – Welcome to a book on the materiality of interaction, welcome to a book on material-centered interaction design! In this introduction to this book, “The Materiality of Interaction – Notes on the Materials of Interaction Design”, I describe the contemporary trend in interaction design towards material interactions, I describe how interaction design is increasingly about materials, and I propose “Material-centered interaction design” as a method for working with materials in interaction design projects.


Sign in / Sign up

Export Citation Format

Share Document