EEE-Hamdard University Bangladesh

EEE-Hamdard University Bangladesh Welcome to the EEE Department at Hamdard University Bangladesh! Join us and empower your future!

Discover excellence in Electrical and Electronic Engineering through innovative research, cutting-edge technology, and dedicated faculty.

 # 🏆 EEE Fiesta 2026 – Project Showcasing (3rd Place Winners)A professional Facebook post with details about both award-...
29/08/2026

# 🏆 EEE Fiesta 2026 – Project Showcasing (3rd Place Winners)

A professional Facebook post with details about both award-winning projects.

Edit

🏆 **Congratulations to Our EEE Innovators!** 🏆

We are delighted to celebrate the remarkable achievement of our students from the **Department of Electrical and Electronic Engineering (EEE), Hamdard University Bangladesh**, who secured **3rd Place** in the **EEE Fiesta 2026 – Project Showcasing Competition**.

Their innovative projects demonstrated practical engineering solutions for real-world challenges in disaster management and healthcare technology.

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# # 🥉 Team 1 – 5th Semester

# # # 🚨 Project: Disaster Alert System

**Team Members:**

* **Md. Ataur Rahman Sifat** — ID: **555241022**

* **Md. Ekramul Islam Akimul** — ID: **555241003**

the Project

The **Disaster Alert System** is a smart safety solution designed to provide **early warnings before and during natural disasters**. The system continuously monitors environmental conditions using sensors and instantly alerts people whenever dangerous situations are detected.

Features

* 🌧️ Detects heavy rainfall, flood risk, and abnormal environmental conditions.

* 🌡️ Monitors temperature, humidity, water level, and other critical parameters.

* 🚨 Provides instant alerts through buzzer, LED indicators, and mobile notifications.

* 📡 Helps communities respond quickly and improve disaster preparedness.



This project aims to reduce disaster-related risks by delivering timely alerts, helping save lives and property through faster emergency response.

---

# # 🥉 Team 2 – 4th Semester

# # # ❤️ Project: CardioSense

**Team Members:**

* **Samrat Sohel** — ID: **555242001**

* **Mohua Akter** — ID: **555242002**

* **Md. Kamrul Hasan Munna** — ID: **555242018**

* **Omma Habeba Orny** — ID: **555242023**

the Project

**CardioSense** is an IoT-based smart health monitoring system developed to monitor a person's cardiovascular health in real time. It helps users track vital health information and detect potential heart-related abnormalities.

Features

* ❤️ Real-time heart rate monitoring.

* 🩸 Blood oxygen (SpO₂) monitoring.

* 📊 Live health data displayed on LCD/mobile dashboard.

* 📱 Emergency alert system for abnormal heart conditions.

* ☁️ IoT connectivity for remote health monitoring.



CardioSense supports early detection of heart-related issues and enables continuous health monitoring, making it useful for elderly people, patients, and home healthcare applications.

---

Both teams have showcased outstanding creativity, technical knowledge, and teamwork by developing projects that address important challenges in **public safety** and **healthcare technology**.

🎉 **Congratulations to both teams for bringing pride to the Department of EEE, Hamdard University Bangladesh.** Wishing you continued success in research, innovation, and future engineering competitions.

**Department of Electrical & Electronic Engineering (EEE)**
**Hamdard University Bangladesh**

🎉 Congratulations!Heartiest Congratulations toMD. Rasel Miah & MD. Ridoy Miazeeon their outstanding achievement of secur...
28/08/2026

🎉 Congratulations!

Heartiest Congratulations to
MD. Rasel Miah & MD. Ridoy Miazee

on their outstanding achievement of securing 2nd Place in the Project Showcasing Competition at EEE Fiesta 2026.

Their innovative project,

“IoT-Based Cattle Farm Monitoring System”

demonstrates creativity, technical knowledge, and practical problem-solving skills.

Wishing them continued success and many more achievements ahead! 🏆✨

Department of Electrical & Electronic Engineering (EEE)
Hamdard University Bangladesh



The **IoT-Based Cattle Farm Monitoring System** is designed to monitor cattle farm conditions automatically and in real time. The system uses an **ESP32 microcontroller** with sensors to measure temperature, humidity, and gas levels. The collected data are transmitted through Wi-Fi to an IoT platform, allowing farmers to monitor the farm remotely using a smartphone or computer. An alert system can notify the farmer when abnormal conditions are detected. This system reduces manual monitoring and improves cattle farm management.

Keywords:** IoT, ESP32, Cattle Farm, Smart Farming, Temperature, Humidity, Livestock Monitoring.



* Monitor temperature and humidity in real time.
* Detect harmful or undesirable gas conditions.
* Provide remote monitoring through IoT.
* Generate alerts during abnormal conditions.
* Reduce manual monitoring effort.

Principle

**Sensors → ESP32 → Wi-Fi → IoT Platform → Mobile/Computer**

Sensors collect environmental data, and the ESP32 processes and sends the data to the IoT platform. If any parameter exceeds the predefined limit, the system activates an alert and notifies the farmer.

Components

* ESP32 Microcontroller
* DHT11/DHT22 Temperature & Humidity Sensor
* MQ-Series Gas Sensor
* LCD/OLED Display
* Buzzer & LED
* Wi-Fi
* IoT Platform



* Real-time monitoring
* Remote access
* Automatic alerts
* Reduced labor
* Low-cost implementation
* Improved farm management

Scope

The system can be further improved by adding **RFID-based cattle identification, AI-based health monitoring, camera surveillance, automatic feeding and watering, GPS tracking, and cloud-based data analysis**.



The proposed IoT-based system provides an efficient and smart solution for cattle farm monitoring. By combining sensors, ESP32, Wi-Fi, and IoT technology, farmers can monitor farm conditions remotely and respond quickly to abnormal situations.

27/08/2026

Call for Participation

INDCon 2026 – International Industrial Application Congress

Post Conference (5th IEEE PEEIACON 2026 ) Co-located events

Sponsors: IEEE Bangladesh Section & IEEE Industrial Applications Society Bangladesh Chapter

Organized by: Ahsanullah University of Science and Technology (AUST), Dhaka

INDCon 2026 is a premier student forum designed to bring together aspiring engineering students, researchers, innovators, and IEEE student volunteers from across Bangladesh. Post conference 5th IEEE Power, Electrical, Electronics and Industrial Applications Conference (PEEIACON 2026) Co-located events, INDCon provides an exciting platform to showcase innovative ideas, projects and research, participate in technical competitions, engage with experts through keynote and invited talks, and expand professional networks within the STEM community.

Mode of participation: Hybrid

Congress date: 29th August 3:00pm at onwards , 2026

Eligibility criteria: An individual or a team is allowed to participate in one of the

following Congress Segments

1. Idea Pitching Competition

Theme: Innovative Solutions for Current Challenges in Bangladesh's Power & Energy Sector

* Team-based competition (Minimum 3 members and Maximum 5 members per team)

* Participants will receive mentorship before the final presentation.

* Present your innovative solution before a panel of experts.

2. Projects / Theses Showcasing

Showcase your research, final-year project, or innovative engineering solution.
Participants will present through:

* Digital Poster Presentation (online)
* Oral Presentation
* Live Demonstration (if applicable)

Projects and theses from the broad technical areas of power and energy are welcome.

3. Quiz Competition

An exciting individual quiz covering:
* Invited Talks
* Workshops
* IEEE Bangladesh Section & IEEE Industrial Applications Society Bangladesh Chapter activities
* Technical Presentations conducted during the conference

Prize Pool

Total Prize Money: BDT 30,000
Idea Pitching (Group Category)
* 🥇 Champion – BDT 5,000
* 🥈 1st Runner-up – BDT 4,000
* 🥉 2nd Runner-up – BDT 3,000
(Maximum number of members in a group is five.)

Projects / Theses Showcasing
* 🥇 Champion – BDT 5,000
* 🥈 1st Runner-up – BDT 4,000
* 🥉 2nd Runner-up – BDT 3,000
(No limit on the number of members in a projects/theses team.)

Quiz Competition (Individual)
* 🥇 Champion – BDT 3,000
* 🥈 1st Runner-up – BDT 2,000
* 🥉 2nd Runner-up – BDT 1,000

Why Participate?
Participating in INDCon 2026 offers much more than just a competition. It is an opportunity to learn, collaborate, innovate, and connect with the STEM community.
Benefits of Participation
* Showcase Your Innovation: Present your project, thesis, or innovative idea before academicians, industry experts, and professionals.
* Idea Sharing & Collaboration: Exchange ideas with talented students and researchers from universities across Bangladesh and receive valuable feedback.
* Learn from Experts: Attend technical workshops, expert presentations, and industry-focused sessions conducted by distinguished speakers.
* Access to Conference Sessions: Participate in keynote speeches, invited talks, and some technical sessions covering emerging topics in industrial applications.
* Win Exciting Prizes: Compete for a total prize pool of BDT 30,000 across different competition categories.
* Participation Certificate: Receive an official certificate recognizing your participation in INDCon 2026.
* Expand Your Professional Network: Connect with IEEE leaders, industry professionals, researchers, faculty members, and fellow students to build lasting academic and professional relationships.
Whether you are an innovator, researcher, or aspiring engineering student, INDCon 2026 provides an excellent platform to demonstrate your potential, gain valuable insights, and become part of Bangladesh's growing engineering community.
Registration deadline : 26th August, 2026

Registration Fees:
IEEE Student Member: BDT 300

Non-IEEE Student: BDT 500

IEEE Student Branch/Student Branch Chapter Executive Committee Members*: BDT 200

Registered Participants of PEEIACON 2026: BDT 200

*Applicable for registered Chair, Vice Chair, Secretary, and Treasurer of an IEEE Student Branch or IEEE Student Branch Chapter.
**This chart is for Individual registration

Registration Payment Method:
BKash Send Money to 01791554299

For any quarries you may contact
Shafaul Azaum
Chairperson IEEE AUST SB
01987342334
[email protected]

Azmain Muksit Anam
Secretary IEEE AUST SB
01977300668
[email protected]

⚙️ **PROJECT SHOWCASE | AUTOMATIC PNEUMATIC UNIVERSAL SWITCH LIFE TESTING MACHINE** 🔧We are proud to present our innovat...
27/08/2026

⚙️ **PROJECT SHOWCASE | AUTOMATIC PNEUMATIC UNIVERSAL SWITCH LIFE TESTING MACHINE** 🔧

We are proud to present our innovative engineering project, **“Automatic Pneumatic Universal Switch Life Testing Machine”**—a smart automation system designed to test the **durability, reliability, and operational life of electrical switches automatically**.

🔹 **Project Objective**
The main goal of this project is to replace repetitive manual switch testing with an **automatic pneumatic testing system** that can operate a switch continuously for thousands of cycles.

🔹 **How It Works**
The system uses a **pneumatic cylinder** to repeatedly press and release the switch. A controller manages the complete operation, while sensors monitor the actuator movement and switch condition. An automatic counter records every switching cycle.

**Compressor → FRL → Solenoid Valve → Pneumatic Cylinder → Switch → Sensor → Controller → Counter**

🔹 **Key Features**
✅ Automatic ON/OFF switching
✅ Pneumatic-based actuation
✅ Adjustable testing speed and pressure
✅ Automatic cycle counting
✅ Switch failure detection
✅ Emergency stop facility
✅ HMI/LCD monitoring
✅ Universal adjustable switch fixture

🔹 **Applications**
This project can be used for testing **push buttons, rocker switches, toggle switches, limit switches, and other electrical switching devices** in industrial and laboratory environments.

🚀 **Future Development**
The system can be upgraded with **IoT monitoring, automatic data logging, cloud-based reports, multiple-switch testing, and AI-based failure prediction**, making it suitable for modern **Industry 4.0** applications.

💡 **This project demonstrates how pneumatic automation and intelligent control can make repetitive electrical testing faster, safer, and more reliable.**

⚡ **Engineering Innovation | Automation | Pneumatics | Electrical Testing**

🌙 ঈদে মিলাদুন্নবী (ﷺ): ভালোবাসা, সুন্নাহ ও আমলের দিন**আলহামদুলিল্লাহ।**রবিউল আউয়াল মাস আমাদের প্রিয় নবী হযরত **মুহাম্ম...
26/08/2026

🌙 ঈদে মিলাদুন্নবী (ﷺ): ভালোবাসা, সুন্নাহ ও আমলের দিন

**আলহামদুলিল্লাহ।**
রবিউল আউয়াল মাস আমাদের প্রিয় নবী হযরত **মুহাম্মদ (সাল্লাল্লাহু আলাইহি ওয়া সাল্লাম)**–এর আগমনের স্মৃতি বহন করে। তাঁর জীবন মানবজাতির জন্য রহমত, হিদায়াত ও উত্তম আদর্শ।

> **"নিশ্চয়ই আল্লাহর রাসূলের মধ্যে তোমাদের জন্য রয়েছে উত্তম আদর্শ।"**
> *(সূরা আল-আহযাব: ২১)*

🌿 এই দিনে আমরা কী কী আমল করতে পারি?

* 📖 বেশি বেশি **দরূদ শরীফ** পাঠ করা।
* 🤲 আল্লাহর কাছে **দোয়া ও ইস্তিগফার** করা।
* 📚 রাসূল (ﷺ)-এর **সীরাত** (জীবনী) অধ্যয়ন ও আলোচনা করা।
* 🕌 **নফল ইবাদত**, কুরআন তিলাওয়াত ও যিকিরে সময় কাটানো।
* ❤️ তাঁর **সুন্নাহ** অনুসরণ করা—সততা, দয়া, নম্রতা ও মানুষের হক আদায় করা।
* 🤝 অসহায় ও দরিদ্র মানুষের পাশে দাঁড়ানো এবং দান-সদকা করা।

✨ আসল ভালোবাসা কী?

রাসূলুল্লাহ (ﷺ)-কে ভালোবাসার প্রকৃত প্রমাণ শুধু আবেগ নয়; বরং তাঁর দেখানো পথে চলা, তাঁর সুন্নাহকে জীবনের প্রতিটি ক্ষেত্রে অনুসরণ করা।

> **"যে ব্যক্তি আমার সুন্নাহকে ভালোবাসে, সে আমাকে ভালোবাসে; আর যে আমাকে ভালোবাসে, সে জান্নাতে আমার সঙ্গী হবে।"** *(হাদিসের মর্মার্থ)*

🌸 **আসুন, এই রবিউল আউয়ালে আমরা দরূদ, সুন্নাহ ও উত্তম চরিত্রের মাধ্যমে রাসূল (ﷺ)-এর প্রতি আমাদের ভালোবাসা প্রকাশ করি।**

**اللهم صل وسلم وبارك على نبينا محمد ﷺ**

25/08/2026

𝑱𝒐𝒊𝒏 𝑶𝒖𝒓 𝑻𝒆𝒂𝒎 𝒂𝒕 𝑵𝒆𝒖𝒓𝒂𝒍 𝑺𝒆𝒎𝒊𝒄𝒐𝒏𝒅𝒖𝒄𝒕𝒐𝒓 𝑳𝒕𝒅.!

𝐖𝐡𝐲 𝐉𝐨𝐢𝐧 𝐔𝐬?

𝗖𝘂𝘁𝘁𝗶𝗻𝗴-𝗲𝗱𝗴𝗲 𝗧𝗲𝗰𝗵𝗻𝗼𝗹𝗼𝗴𝘆: Work on state-of-the-art projects that shape the future of the semiconductor industry.
𝗗𝘆𝗻𝗮𝗺𝗶𝗰 𝗘𝗻𝘃𝗶𝗿𝗼𝗻𝗺𝗲𝗻𝘁: Collaborate with a passionate and diverse team of experts.
𝗖𝗮𝗿𝗲𝗲𝗿 𝗚𝗿𝗼𝘄𝘁𝗵: Opportunities for continuous learning and career advancement.
𝗜𝗻𝗻𝗼𝘃𝗮𝘁𝗶𝘃𝗲 𝗖𝘂𝗹𝘁𝘂𝗿𝗲: Be part of a culture that encourages creativity and innovation.

📌 Open Position:
✅ Trainee Engineer (VLSI)
✅ Freshers are encouraged to apply

🔗 Apply Here: https://forms.gle/Yv2PVT3bxzmLi7eN6

Don't miss this chance to be part of a pioneering team in the Semiconductor industry. Apply today and help us innovate the future!

📢 **CALL FOR PAPERS | ICEEICT 2027** ⚡The **7th International Conference on Electrical Engineering and Information & Com...
24/08/2026

📢 **CALL FOR PAPERS | ICEEICT 2027** ⚡

The **7th International Conference on Electrical Engineering and Information & Communication Technology (ICEEICT 2027)** is coming to **MIST, Dhaka**! 🇧🇩

🔬 **A great opportunity for researchers, students, engineers, and academics** to present innovative research and connect with a global community.

📅 **Conference:** 28–30 January 2027
📍 **Venue:** Military Institute of Science and Technology (MIST), Dhaka
🌐 **Mode:** Hybrid — In-Person & Virtual
📄 **Paper Submission Deadline:** **31 August 2026**
🏆 **Awards:** Best Paper, Best Poster & Best Presenter Awards
💰 **Limited travel grants** are also available for selected international student authors.

# # # 🔥 Major Technical Tracks

• Artificial Intelligence & Data Analytics
• Biomedical Engineering
• Communication Technology
• Computer Network & Security
• Machines & Power Electronics
• Multimedia & Signal Processing
• Power, Energy & Climate Nexus
• Semiconductor Devices & Circuits

✨ **Submit your research. Share your ideas. Connect with global leaders. Make an impact.**

🔗 **Website:** iceeict.mist.ac.bd
📧 **Email:** [[email protected]](mailto:[email protected])

🏆 CONGRATULATIONS TO OUR EEE INNOVATORS! 🏆We are incredibly proud to congratulate Ananda (555251008) and Mujamer (555251...
23/08/2026

🏆 CONGRATULATIONS TO OUR EEE INNOVATORS! 🏆

We are incredibly proud to congratulate Ananda (555251008) and Mujamer (555251028) from the 3rd Semester, Department of Electrical & Electronic Engineering, Hamdard University Bangladesh, for securing an outstanding 3rd Place in Poster Presentation at EEE Fiesta 2026! 🎉

Project Overview

This project presents a wearable prototype for continuous blood glucose monitoring without conventional blood sampling. The system aims to provide a comfortable, convenient, and real-time method of monitoring glucose levels using non-invasive sensing technology.

Working Principle

The wearable device uses non-invasive sensing techniques to detect glucose-related changes through the skin. The sensor collects physiological information, which is processed by a microcontroller and converted into an estimated glucose value. The result can then be displayed on a wearable interface or smartphone.

Basic Flow:

Non-Invasive Sensor → Signal Acquisition → Signal Processing → Microcontroller → Glucose Estimation → Display/Smartphone

Main Components
Non-invasive glucose sensor
Microcontroller
Signal conditioning circuit
Display / OLED
Bluetooth or Wi-Fi module
Rechargeable battery
Wearable wristband/prototype enclosure
Key Features
🩸 No finger-pricking
📊 Continuous monitoring
⏱️ Real-time data
📱 Smartphone connectivity
⌚ Wearable and portable
❤️ User-friendly health monitoring
Objective

The main objective is to develop a low-cost, comfortable, and portable wearable prototype capable of continuously estimating blood glucose levels and presenting the information in an easy-to-understand format.

21/08/2026

⚡ **A JOURNEY OF INNOVATION, ENERGY & EXCELLENCE!** ⚡

🎉 **EEE FIESTA 2026 — Where Engineering Meets Passion!** 🎉
*“Beginning of EEE Rhapsody”* 💙

From inspiring moments with our respected guests to the excitement of enthusiastic students, **EEE Fiesta 2026** was truly a celebration of **Electrical & Electronics Engineering, creativity, innovation and teamwork.** 🔌🤖⚡

✨ Every smile.
✨ Every project.
✨ Every achievement.
✨ Every unforgettable moment.

Together, we created memories that will stay with us for a long time. ❤️

📍 **Department of Electrical & Electronics Engineering (EEE)**
🎓 **Hamdard University Bangladesh**
🔥 **EEE FIESTA 2026**

**This wasn’t just an event — it was a celebration of the EEE spirit!** 💫

🏆 **EEE FIESTA 2026 | 2nd Place in Poster Presentation** 🏆We are proud to announce that **Md. Tawhedul Islam (ID: 555232...
20/08/2026

🏆 **EEE FIESTA 2026 | 2nd Place in Poster Presentation** 🏆

We are proud to announce that **Md. Tawhedul Islam (ID: 555232007, 6th Semester)** and **Junaid Hasan (ID: 555241024, 5th Semester)** secured **2nd Place** in the Poster Presentation at **EEE FIESTA 2026**.

🔬 **Research Topic:**
**“Design and Analysis of Piezoelectric Energy Harvester for Powering Cardiac Pacemaker”**

# # Abstract

This research presents a piezoelectric energy harvesting system designed to convert low-frequency mechanical vibrations from cardiac or body motion into electrical energy. The proposed system uses a piezoelectric cantilever beam to generate electrical energy through the direct piezoelectric effect. The generated output is rectified, stored, and regulated for potential use in low-power cardiac pacemaker electronics. The study focuses on resonance frequency, beam dimensions, tip mass, output voltage, and power generation. The proposed approach demonstrates the potential of biomechanical energy harvesting as an auxiliary power source for future implantable medical electronics.

# # Introduction

Cardiac pacemakers normally depend on batteries with limited lifetimes. Replacing these batteries may require additional medical procedures. Piezoelectric energy harvesting provides a possible alternative or supplementary energy source by converting mechanical vibrations into electrical energy.

# # Working Principle

The system operates as:

**Cardiac/Body Vibration → Mechanical Deformation → Piezoelectric Material → Electrical Energy → Rectifier → Energy Storage → Voltage Regulator → Low-Power Electronics**

When vibration causes the piezoelectric material to deform, electrical charges are generated. The output is then converted into usable DC energy and stored for later use.

# # Energy Management

The generated electrical output passes through:

**Piezoelectric Harvester → Rectifier → Capacitor → Energy Storage → Voltage Regulator**

The storage element accumulates the harvested energy and the regulator provides a stable output to the low-power electronic load.

# # Expected Outcome

The main expected outcomes are:

* Efficient conversion of mechanical vibration into electrical energy.
* Identification of the optimum resonance condition.
* Analysis of beam dimensions and tip mass.
* Measurement of output voltage and power.
* Evaluation of the feasibility of energy harvesting for cardiac electronics.

# # Limitations

The available biomechanical energy is very small and variable. Therefore, the system should initially be considered an **auxiliary or feasibility concept**, rather than a direct replacement for a clinical pacemaker battery. Biocompatibility, reliability, safety, and long-term performance require further investigation.

# # Conclusion

The proposed piezoelectric energy harvester offers a promising approach for recovering small amounts of energy from cardiac or body vibrations. By combining a resonant piezoelectric structure with efficient rectification, storage, and power management, the harvested energy may support future low-power biomedical electronics. Further experimental and clinical research is required before practical pacemaker application.

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