Arduino Heart Rate Monitor
Arduino Heart Rate Monitor · Arduino Systems
Embedded Systems · Sensor Project Focus
Arduino · Sensors / Inputs · Control Logic · Output / Monitoring
Abstract
This project presents arduino heart rate monitor, an embedded-system concept centered on pulse sensing and real-time heart-rate display for educational or fitness monitoring. The input stage uses pulse sensor to acquire user commands, physical measurements, or environmental signals. The Arduino-family controller performs signal conditioning, threshold checks, timing, or control logic and then drives the required output stage. The architecture is intended as a compact educational prototype that demonstrates the complete sensing-to-decision-to-action workflow.
The system can be extended with data logging, wireless connectivity, calibration routines, fault handling, and a web or mobile dashboard where appropriate. Practical implementation should use correctly rated drivers, isolated interfaces, regulated power supplies, and application-specific safety limits. For biomedical, safety-critical, mains-voltage, or other regulated applications, the prototype should be treated as an educational platform rather than a certified product.
Block Diagram
Data flow: input sensing or user command → controller processing → output/action, with optional storage and monitoring paths.
Related Journal Articles & DOI Links
Selected peer-reviewed publications and scholarly search relevant to Arduino Heart Rate Monitor. Use the links to access related literature.
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1. Arduino-Based Heart Rate Monitoring System Using Mamdani Fuzzy Logic
Scholarly search — Arduino, embedded system, sensors, control logic
https://scholar.google.com/scholar?q=Arduino+Heart+Rate+Monitor+Arduino+embedded+system+journal -
2. Design and Evaluation of Low-Cost Arduino-Based Embedded Systems
Sensors / IEEE Access (representative)
Open related journal literature search
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Sensors & Hardware
Arduino Uno/Nano/ESP32, sensors, OLED/LCD, actuators and full hardware bring-up support.
Control & Logic
Threshold-based detection, filtering, decision logic and real-time control routines.
Code & Firmware
Clean Arduino sketches, I2C/SPI drivers, serial monitor and optional Blynk / ThingSpeak.
Report & Viva
University-format documentation, PPT and viva preparation.
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