Projects using Ardiuno in NigeriaProjects using Ardiuno in Nigeria
Cover image for This is a project I
This is a project I titled: Development of High Blood Pressure (HBP) Prediction and Monitoring System Using CNN-BiLSTM and Fuzzy Logic in Real Time Still undergoing development: 1. The Flask backend is operational with an integrated CNN-BiLSTM prediction pipeline and a fuzzy logic module for health risk assessment, along with REST API endpoints for communication. 2. A Flutter mobile application has been developed, featuring a dashboard that displays various health metrics and successfully communicates with the backend. ‎3. Hardware development includes the successful configuration of the ESP32 microcontroller, integration of an OLED display, and testing of the MAX30102 PPG sensor for real-time waveform acquisition. 4. AI integration involves transmitting real PPG data from the MAX30102 sensor to the Flask backend, where the CNN-BiLSTM model generates blood pressure predictions, which are then returned to the ESP32 and backend. ‎5. The complete communication pipeline from sensor to monitoring dashboard has been established, confirming successful real-time signal processing for blood pressure prediction. ‎6. Ongoing work focuses on sensor stabilization, hardware integration, synchronization of live updates, alert mechanisms, power management, and final system packaging. 7. The core real-time HBP prediction system using CNN-BiLSTM is implemented and tested, with the project now in the optimization stage before final deployment. Willing to hear suggestions and getting more gigs to work with and solving of problems
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Cover image for 🚀 Project Completed | ESP32-Based
🚀 Project Completed | ESP32-Based Interactive Virtual Pet 🐾🤖 I’m excited to share my latest Embedded Systems & IoT project, an interactive virtual pet built around the ESP32 that can sense its environment, process real-time data, and respond through expressive animations and behaviors. 🌡️💡 The project combines multiple sensors with a 128×64 OLED display to create a responsive digital companion that reacts dynamically to environmental conditions. 🔧 Key Features 🥰 Animated virtual pet with multiple expressions and behaviors 🌡️ Real-time temperature & humidity monitoring using DHT11 💡 Light/dark detection using LDR 👋 Object detection using an IR sensor 📏 Proximity detection using an ultrasonic sensor 😴 Automatic sleep mode in dark conditions 🥵 Sweating animation when the temperature becomes high 😍 Excited reaction when an object approaches 🟢🔴 Temperature-based safety indicators using LEDs 🕒 Real-time clock using a TM1637 4-digit display 📡 ESP32 Wi-Fi connectivity 🌐 HTTP-based web interface for live sensor data ⚡ Non-blocking animations and real-time sensor processing 🛠️ Technologies & Components ESP32 | Embedded C/C++ | Arduino | Wi-Fi | HTTP | DHT11 | LDR | IR Sensor | Ultrasonic Sensor | TM1637 | SSD1306 OLED | I2C | Sensors & Actuators This project gave me valuable hands-on experience in microcontroller programming, sensor integration, OLED graphics and animations, real-time systems, wireless communication, and embedded web applications. What makes this project particularly interesting to me is the combination of: Sensing → Decision Making → Interaction Instead of simply displaying sensor readings, the system interprets environmental data and transforms it into visual and behavioral responses, making the pet feel more responsive, interactive, and alive. 🧠⚡ 🚀 I’m looking forward to adding more intelligence, animations, and interactive features to this little companion while continuing to build practical and innovative Embedded & IoT systems. #ESP32 (https://www.linkedin.com/search/results/all/?keywords=%23esp32&origin=HASH_TAG_FROM_FEED) #EmbeddedSystems (https://www.linkedin.com/search/results/all/?keywords=%23embeddedsystems&origin=HASH_TAG_FROM_FEED) #EmbeddedC (https://www.linkedin.com/search/results/all/?keywords=%23embeddedc&origin=HASH_TAG_FROM_FEED) #IoT (https://www.linkedin.com/search/results/all/?keywords=%23iot&origin=HASH_TAG_FROM_FEED) #Arduino (https://www.linkedin.com/search/results/all/?keywords=%23arduino&origin=HASH_TAG_FROM_FEED) #OLED (https://www.linkedin.com/search/results/all/?keywords=%23oled&origin=HASH_TAG_FROM_FEED) #Electronics (https://www.linkedin.com/search/results/all/?keywords=%23electronics&origin=HASH_TAG_FROM_FEED) #EmbeddedEngineer (https://www.linkedin.com/search/results/all/?keywords=%23embeddedengineer&origin=HASH_TAG_FROM_FEED) #IoTProjects (https://www.linkedin.com/search/results/all/?keywords=%23iotprojects&origin=HASH_TAG_FROM_FEED) #Microcontrollers (https://www.linkedin.com/search/results/all/?keywords=%23microcontrollers&origin=HASH_TAG_FROM_FEED) #DHT11 (https://www.linkedin.com/search/results/all/?keywords=%23dht11&origin=HASH_TAG_FROM_FEED) #Sensors (https://www.linkedin.com/search/results/all/?keywords=%23sensors&origin=HASH_TAG_FROM_FEED) #EmbeddedProgramming (https://www.linkedin.com/search/results/all/?keywords=%23embeddedprogramming&origin=HASH_TAG_FROM_FEED) #EngineeringProjects (https://www.linkedin.com/search/results/all/?keywords=%23engineeringprojects&origin=HASH_TAG_FROM_FEED) #TechProjects (https://www.linkedin.com/search/results/all/?keywords=%23techprojects&origin=HASH_TAG_FROM_FEED) #LearningByBuilding (https://www.linkedin.com/search/results/all/?keywords=%23learningbybuilding&origin=HASH_TAG_FROM_FEED)
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