Smart Sensors for Domotics and Health Care, Alessandra Flammini, Brescia University 1

Similar documents
EMBEDDED SYSTEMS AND MOBILE SYSTEMS

Regulation and the Internet of Things

MODAInnovations Complete Academic Project Solutions

COMP327 Mobile Computing Session: Lecture Set 6 - The Internet of Things

Innovative M-Tech projects list

Ubiquitous IoT Perspectives The Power of Connected Sensors and Actuators

EMBEDDED MAJOR PROJECTS LIST

From Boolean Algebra to Smart Glass

IEEE PROJECTS ON EMBEDDED SYSTEMS

Lecture 20: Future trends in mobile computing. Mythili Vutukuru CS 653 Spring 2014 April 7, Monday

Wearable Technologies and the IoT. David Lamb Market Development Manager, North Europe STMicroelectronics

Wireless Best Kept Secret For Now

Introduction to Mobile Ubiquitous Computing Systems

Table of Contents. Index CONNECTED WEARABLES

EMBEDDED MAJOR PROJECTS LIST

Bluetooth Smart Scale & Body Fat Monitor USER GUIDE

Real-time Academic Bio-medical projects list

Innovative M-Tech projects list IEEE papers

Smart City Solution & Case Study. LG Uplus

Weared Data; the Personal and Proprietary Nature of Data on Wearable Technology Devices. Dr. Michael Conyette

The 5G Business Potential. Terminsstart Telekom 2017 Monika Byléhn, 5G marketing director

B.TECH/M.TECH MINOR/MAJOR PROJECT

SMART Technologies. Introducing bluetooth low energy and ibeacon

Talon Communications. Wireless and Video Product Development It s what we do!

IoT starts impacting the MEMS market

Table of Contents. Index CONNECTED WEARABLES

The Internet of Things

Mobile and Ubiquitous Computing: Mobile Sensing

The Future of Consumer Interaction via Packaging

Smart Wearables: Enriching The Digital Sixth Sense. Pankaj Kedia Sr. Director & Business Lead, Smart Wearables Segment Qualcomm Technologies, Inc.

Implementing Smart PE

Expanding the human possibilities of the connected world

9/27/15 MOBILE COMPUTING. CSE 40814/60814 Fall System Structure. explicit output. explicit input

A QUALITY SUPPORT FOR YOUR FINAL YEAR PROJECT DEVELOPMENT & RESEARCH WORK ANDROID TOPICS RESEARCH AND CONFERENCE ORIENTED TITLES

Advanced Packaging for Wearables (Vital Signs Monitoring) Vikram Venkatadri IMAPS New England 5/1/2018

EMBEDDED SYSTEMS 2017 IEEE PROJECT

Overview. Background. Intelligence at the Edge. Learning at the Edge: Challenges and Brainstorming. Amazon Alexa Smart Home!

UX Wearables at Work. Noel Portugal Emerging Technologies Development Manager, Applications User Experience. March 12, 2015

+ Front Door Security + Smart Video Alarms + Indoor Cameras + Personal Trackers SOLUTIONS FOR SMART & SAFE HOMES

IoT Ecosystem and Business Opportunities

Ericsson networked society. 27 th of September 2017, Espoo

Slide 1. Opera Max. Migrating the next billion smartphone users for better app experience

A System for Monitoring Hand Hygiene Compliance based-on Internet-of- Things

Tehnika revolutsioon: uudsed targad lahendused, mis viivad interneti lõpptarbijani!

YOUR GUIDE TO MAXIMISE REVENUE WITH

Kostas Giokas MONITORING OF COMPLIANCE ON AN INDIVIDUAL TREATMENT THROUGH MOBILE INNOVATIONS

The Internet of Things - Opportunities for the Secondary Equipment Market

IOT Communications Network for Data

Ubiquitous Computing. Ambient Intelligence

Embedded Systems Projects

The following use cases were developed by the Connected Living Programme in 2014/15:

An Overview of Smart Sustainable Cities and the Role of Information and Communication Technologies (ICTs)

Internet of Things Deployment: The Evolution of M2M Connectivity

IoT as Enabling Technology for Smart Cities Panel PANEL IEEE RTSI

Index. Battery life, Blood pressure monitor, 193

Internet of things. F r o m t h e n e t w o r k t o. Ing. Patrizia Macrina Ericsson

SECURING UNDERWATER WIRELESS COMMUNICATION NETWORK DEVELOPMENT OF A MOBILE EEG-BASED BIOMETRIC AUTHENTICATON SYSTEM

STMicroelectronics is pleased to present the. Attend a FREE One-Day Technical Seminar Near YOU!

Tizen apps with. Context Awareness, powered by AI. by Shashwat Pradhan, CEO Emberify

Opening a New Era of IoT Opportunities and Solutions. Harrison Hsieh GM of Connectivity Technology Development

MEMS & Sensors for wearable electronics. Jérémie Bouchaud Director and Senior Principal Analyst IHS Technology

6.S062: Mobile and Sensor Computing aka IoT Systems

Electrification of Mobility

M2M Evolution Topic: Connected Home of the future IoT. Comcast. Adam Gladsden & Tariq Chowdhury

In the chemical plant, gas station and other explosives near, Don't use watch on the plane. Please check whether the

Fusing Sensors into Mobile Operating Systems & Innovative Use Cases

NXP Semiconductors Smart Grid, Smart Mobility. Maurice Geraets June 2014

Standards for an Internet of Things Break-Out Session 1: IoT for People. Intel

In the standby interface of the smart watch, pull down the screen, will display

Mobile based Text Image Translation System for Smart Tourism. Saw Zay Maung Maung UCSY, Myanmar. 23 November 2017, Brunei

Mobile World Congress 2014 Recap March 10, Source: DigitalTrends.com

Internet-of-Things Conference. Andrew Bickley Technology Marketing Director

Types of Computers. Computer Technology (S1 Obj 1-1)

Package Technology for Wearable Devices. SungSoon Park Amkor Technology Korea

The Challenges of Wearable Electronics

Agile IoT Solution Driving Digital Transformation of Transportation

Digital transformation in the Networked Society. Milena Matic Strategy, Marketing & Communications June 2016

The Smart Glasses Revolution & The Rise of Augmented Reality in Manufacturing. Dan C. Cui VP Business Development Vuzix Corp.

ZIGBEE (WIRELESS) BASED PROJECTS

The Opportunities and Challenges of IOT Market. YuChuan Yang MediaTek Inc.

CHAPTER 1 INTRODUCTION

BIO-MEDICAL BASED PROJECTS

INTERNET OF THINGS FOR SMART CITIES BY ZANELLA ET AL.

INSPIRING IOT INNOVATION: MARKET EVOLUTION TO REMOVE BARRIERS. Mark Chen Taiwan Country Manager, Senior Director, Sales of Broadcom

FOR ALL YOUR GADGET REQUIREMENTS

How To Setup Bluetooth Iphone 4s Ringtones On Windows >>>CLICK HERE<<<

NEXT GENERATION Mobile PHONE SUPER PHONE

Enabling Breakthroughs in Medical Electronics. Karthik Vasanth, Ph.D General Manager, Medical and High Reliability Business Unit

Swatch Group Ltd. JMSB Consulting George Emery Jonathan Suprovici Eliane Roy Cinzia Ruberto

Health Monitoring Using Fitness Band and IOT

NTT DOCOMO Technical Journal

Smartwatch User Manual

Internet of Things. Sungkyunkwan University. Mobile Computing. Hyunseung Choo

CLASSIFYING AND EVALUATING COMPUTERS

ios 11 and ipads ipad only Now lists latest runs apps New ipad Dock Can now add up to 15 items in the dock Can swipe up from bottom to display dock. E

Telecom Italia Smart sustainable cities experiences

Mobile-Edge Computing. Zhiyong Chen Department of Electronic Engineering Shanghai Jiao Tong University, China Nov

Korea ICT Market Overview. Yoonmi Kim Finpro Korea

HEXIWEAR COMPLETE IOT DEVELOPMENT SOLUTION

The Internet of Everything

Transcription:

1

THE SMARTPHONE AS THE PERSONAL TUTOR WEARABLE SENSORS OR THE SENSORS EMBEDDED IN THE SMARTPHONE CAN BE COMMUNICATED FOR SAFETY AND SECURITY GPS, timestamp Accelerometers, audio, images 3G, WiFi Telemedicine Security The Smartphone is the gateway between sensors and Web services Relatives, friends, 2

WEARABLE SENSORS: A TREND 3

WEARABLE DEVICE AND WEARABLE COMPUTERS Wearable Objects A wearable object is: with sensors and/or actuators small and light battery powered easily wearable and removable (implantable objects are medical devices!) wireless connected (typ. to a Smartphone BT- or to Internet WiFi, GSM-) Wearable device means a non-programmable wearable object that must be managed by a computer (it cannot manage other peripherals) smart textile, exoskeleton cardio belt pedometer bracelet Wearable computers means a programmable wearable object that include computing and managing functions smart watch smart glasses smart lens 4

BRACELET, CARDIO BELT AND SMART SWATCH A bracelet (wearable device): ALL have battery problems!!! has an accelerometer supposes that arm movements are a good indication of the body movements need a Smartphone or a gateway to communicate (BT, low-power proprietary communication system), for computing and human interface A cardio belt (wearable device): has two or more electrodes (textile) furnishes a single lead ECG (ElectroCardioGram) could have sensors (accelerometers) for posture and movement recognition could have sensors for breath frequency measurement need a Smartphone or a gateway to communicate (BT, low-power proprietary communication system) and for human interface A smartwatch (wearable computer): has an Operative System and support BT and/or WiFi can manage other devices (bracelet cardio belt, ) have accelerometers and could have other sensors (camera, thermometer,..) could have a PPG (PhotoPletismoGrafic) sensor for heart rate (poor) 5

VIRTUAL REALITY AND AUGMENTED REALITY Virtual reality is a computer-simulated reality with sensory experiences (sight, hearing, touch, smell) education and training games (from pinball to complex headset) exposure therapy (phobia) Augmented reality means a living view of reality with real-time added information (video, audio, ) Sports (soccer, arbiter plus computer vision and ball recognition) Military (real-time information about the place and potential dangers) games (Wii, real-time movement recognition by Kinect) education (interactive whiteboard) Smart Glasses 6

SMART GLASSES (e.g. Google glasses) Smart Glasses Glasses with augmented reality optical head-mounted display internet connection (or Bluetooth to a connected Smartphone) hands free functions of smartphone simple Input interface (touchpad or buttons, voice, eye tracking, camera for gesture recognition, sensors, touchscreen of the Smartphone) could include sensors (PPG, GPS, ligth, ) could include activity tracker (accelerometers and computing) could include a camera (tag recognition easy- object recognition difficult-) could have an Operative System could be used in healthcare applications (blind, see&talk) have privacy concerns have battery limits and could be annoying 7

WEARABLE SMART OBJECTS: tests Tests 1) The gateway function of the Smartphone implies [b]: a. Computing b. Communications c. Sensors d. Human interface 2) A generic cardio belt (not a specific brand) can manage. [d] a. a bracelet b. a pedometer c. a smart watch d. no other devices 3) A can be programmed with one or several Apps [c] a. bracelet b. pedometer c. smart watch d. cardio belt 4) A is a device with augmented reality [a] a. smart glasses b. smart watch c. PC d. Kaleidoscope 5) Smart Watch [d] a. Is a device with virtual reality b. Allows ECG sensing (single lead only) c. Is a valid help for the blind d. has an Operative System 8

9

INTERNET OF THINGS (1999) Things with internet connectivity, - easy, thanks to low cost electronic devices (WiFi, BT with a Smartphone as the gateway) Things with a database in cloud - quite easy, thanks to low-cost open cloud technologies (google drive, dropbox) Things communicating each other (M2M, machine to machine communications) - quite difficult. Two approaches: standard protocols, Application in cloud (new) Adding a new thing in a transparent way (without programming) - Difficult, especially in a multi-vendor, multi-devices, multi-standard scenario An example: Camera with Eye-Fi - Enable WiFi connection or gateway (e.g. Smartphone) - Photos are directly sent in cloud - Possibility of instantaneous photo exchange between two cameras - Suitable applications allow to publish photo in Instagram or Facebook 10

INTERNET OF THINGS AND SMART CITIES New services for citizens are for digital natives Internet is in the streets and in public spaces a lot of available information for who is able to recover it Internet technology is cost-saving (posters with respect to NFC or QR) 11

INTERNET OF THINGS IN THE WORLD Data from Ericsson Mobility Report 2017 7,6 billions of SIM (since 1991, 2G). 7,5 billions of humans (worldometers 2017) 3,9 billions of smartphones (growing number), 4,4 billions of cellular phones Data from STATISTA, the statistical portal 2017 2 billions of Facebook users at month in the world 21 millions of Facebook user at month in Italy (about 60 millions of persons) Connected devices 12

MOBILE SUBSCRIPTION (Ericsson mobility report, june 2017) 13

INTERNET OF THINGS Many application fields energy and resource metering many meters, even from different vendors, form a reconfigurable network for billing. New node can be added. No real-time, easy, available now smart grids energy distribution, from primary substation down to secondary and users, together with renewable plants and energy storage systems is a real-time network (protections, management of energy flows). Next future intelligent transportation infrastructure interact in real-time with vehicles and vehicles interact each other in order to minimize accidents and slow-down. Difficult, privacy and responsibility concerns. Future smart buildings & buildings automation (energy, thermal) elevators cooperate each other and with lighting and thermal management, to keep constant and low the energy consumption; quite difficult, now managed by a Central Controller. Next future ambient assisted living 14

AMBIENT ASSISTED LIVING Peoples with disabilities strong and well-tailored home automation, not exactly internet of things, to reduce hospitalization and increase the quality of life: many remotely controlled devices and structures intelligent doors and windows real-time monitoring systems (e.g. cameras, medical devices), telemedicine robots and exoskeletons costly and strongly personalized systems, ad hoc programmed, available now next IoT example: a medical device indicates an increase of sugar in blood and a future smart coffee machine reduces the sugar dosage in the coffee Normal people, ambient assisted living is IoT at home Now: practically no-home automation (few remote control, some automation for security). Next Future: smart automation for energy saving (appliances cooperate each other not to overcome the fare limit (e.g. 3kW); difficult, now managed by a Central Controller. Next future: each appliance interact with its own cloud, a home descriptor allow a general management of energy sources and loads) 15

IoT at home Normal people, ambient assisted living is IoT at home Some smart devices are appearing, but M2M is still far: refrigerator knowing the content and relate expiry date and suggesting shopping or suitable recipes television learning our preference and signaling events (social, web) smart scales with body and health monitoring cleaning robots learning paths and avoiding obstacles smart heating and refrigerating systems with control of the indoor air quality smart cameras for baby protecting Future scenarios: a home that recognize your health and adapt itself to your needs a home that changes behavior according to the inhabitants in that room in order to increase their quality of life Limits: cost with respect to real needs and benefits (just for rich people) privacy and security (e.g. sniffer for obd2 connector mandatory for car) 16

IoT at home: smart refrigerator Smart refrigerator (2000, LG Internet Digital DIOS) A refrigerator recognizing and tracking its content, also managing purchase and interacting with other appliances a smart refrigerator has a local Human Machine Interface (HMI) and Apps a smart refrigerator knows what is inside because: the user communicates (by local HMI or by App) what is putting inside and what is taking the user passes the barcode (camera, food recognition) or RFID it has sensors to recognize and weigh food (load cells) the user puts food in identified and sensorized shelves and trays and containers it manages purchases A smart refrigerator can also manage information about the state of food and the expiry date: if the user communicates these information if it has sensors (cameras, gas sensors, RFID) A smart refrigerator can suggest food: according to a diet prescription and to available food 17

IoT at home: smart scale Smart scale (2009, Withings WiFi Body Scale) A scale recognizing the user and communicating weight, BMI (Body Mass Index, weight divided by height squared), fat mass and other indicators to cloud for tracking, recording and applications. It can be configured (e.g. height) some complex smart scales can be considered as medical devices, tracking: Dual Frequency BIA (Bioelectrical impedance analysis) bone mass, visceral fat, muscle mass, BMI, weigh basal metabolic rate (BMR - the amount of energy you expend each day when at rest), heart rate other (e.g. weather, air quality) a smart scale can be connected to: smart refrigerator to purchase the right food activity tracker to adjust prescription climate controller for indoor optimal setting many Apps concerning diet and activity A smart scale normally: does not measure the height (setting) recognizes the user mainly by the weight 18

INTERNET OF THINGS: tests Tests 1). is a typical communication of Internet of Things [d] a. USB b. Bluetooth c. GSM d. M2M 2) Internet of things is available now in the field of [a] a. Energy and resource metering b. intelligent transportation c. Smart Grids d. smart buildings & buildings autom. 3) A smart scale with internet connection and health monitoring functions. [c] a. Is a IoT device in the metering field b. Is a IoT device in the smart building & buildings automation field c. Is a IoT device in the ambient assisted living field d. Is not a IoT device because it is not certified as medical device 4) A smart scale normally recognize the user by [d] a. BMI b. the height c. the impedance d. the weight 19