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“Using wherever SIM, Arduino and API
as IoT Alert System for Real Time e-Health Monitoring”
Karina Popova @kary_key
Dev/Op...
German precision in
global messaging
50
Employees
14
Years of experience
79 mill.
Transactions per month
23.1 mill.
€ Revenue in 2015
99.999
% Platform availab...
Cellular Connectivity For The IoT
Use Cases
Payment Terminals Fleet Management Smart Metering Asset Tracking
Smart Home Security & Surveillance E-Health-Man...
E-Health Monitoring
Arduino GSM Shield
Pulse Sensor
wherever SIM
Do you want your device to be mobile?
Do you have an automated business processes?
How much security does your project nee...
Easy Implementation
Transparent Network Architecture
Your Network Device
Network
Demonstration of the Access Control
Endpoints
Service profiles
IoT device
Patching Endpoint Configuration
E-Health Monitoring
Schema
Sketch for Arduino
Sketch for Arduino + GSM
Results
Github
https://github.com/
whatevermobile/
whereverSIM
Karina Popova
Telephone: +49 (40) 88 88 08-71
Email: kapo@whatevermobile.com
whatevermobile.com
karinapopova.com
/whatever...
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Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 1 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 2 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 3 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 4 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 5 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 6 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 7 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 8 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 9 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 10 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 11 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 12 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 13 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 14 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 15 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 16 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 17 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 18 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 19 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 20 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 21 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 22 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 23 Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring Slide 24
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The Concept: To design a wearable heart rate monitor using photoplethysmography that will alert specific individuals if the wearer's heart rate goes below or above a pre-defined threshold. It should also allow for remote monitoring of the wearers pulse at any given time.
The schema: the electronic system is a schema of wearable device which controls pulse quite precisely in a few minutes. The device utilizes the signals from human body to detect the occurrence of heart beat. As soon as the device detects the critical value, it transmits a coded signal. The signal is decoded by a GSM receiver to produce control signals for switching an alarm device as mobile messaging device and trigger a emergency with wherever SIM.

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Workshop. Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring

  1. 1. “Using wherever SIM, Arduino and API as IoT Alert System for Real Time e-Health Monitoring” Karina Popova @kary_key Dev/Ops, M.Sc at whatever mobile GmbH
  2. 2. German precision in global messaging
  3. 3. 50 Employees 14 Years of experience 79 mill. Transactions per month 23.1 mill. € Revenue in 2015 99.999 % Platform availability 400+ Mobile networks Company Facts
  4. 4. Cellular Connectivity For The IoT
  5. 5. Use Cases Payment Terminals Fleet Management Smart Metering Asset Tracking Smart Home Security & Surveillance E-Health-Management
  6. 6. E-Health Monitoring
  7. 7. Arduino GSM Shield
  8. 8. Pulse Sensor
  9. 9. wherever SIM
  10. 10. Do you want your device to be mobile? Do you have an automated business processes? How much security does your project need? How often do you need access to your device? Where do you use your device? Five Helpful Questions Find more information on: https://whatevermobile.com/mobile-connectivity-provider
  11. 11. Easy Implementation
  12. 12. Transparent Network Architecture Your Network Device Network
  13. 13. Demonstration of the Access Control
  14. 14. Endpoints
  15. 15. Service profiles
  16. 16. IoT device
  17. 17. Patching Endpoint Configuration
  18. 18. E-Health Monitoring
  19. 19. Schema
  20. 20. Sketch for Arduino
  21. 21. Sketch for Arduino + GSM
  22. 22. Results
  23. 23. Github https://github.com/ whatevermobile/ whereverSIM
  24. 24. Karina Popova Telephone: +49 (40) 88 88 08-71 Email: kapo@whatevermobile.com whatevermobile.com karinapopova.com /whatevermobile /popovakarina /whatevermobile /kary_key Get in Touch With us!
  • ShivaniKuduple

    Sep. 12, 2020

The Concept: To design a wearable heart rate monitor using photoplethysmography that will alert specific individuals if the wearer's heart rate goes below or above a pre-defined threshold. It should also allow for remote monitoring of the wearers pulse at any given time. The schema: the electronic system is a schema of wearable device which controls pulse quite precisely in a few minutes. The device utilizes the signals from human body to detect the occurrence of heart beat. As soon as the device detects the critical value, it transmits a coded signal. The signal is decoded by a GSM receiver to produce control signals for switching an alarm device as mobile messaging device and trigger a emergency with wherever SIM.

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