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Wireless Communication IEEE Projects 2019-2020 Chennai
Academic Year
2019 – 2020
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About IEEE Wireless Communication Projects
At 1 Crore Project Centre Chennai, we take immense pride in being at the forefront of Wireless Communication Projects for the years 2019-2020. Our commitment to excellence and innovation has led us to develop and execute groundbreaking projects that harness the power of wireless technology. Whether you’re a student seeking hands-on experience or an industry professional looking to stay ahead in this dynamic field, our center in Chennai is your ultimate destination.
Wireless communication is a rapidly evolving field, and our center is equipped with the latest tools, technologies, and a team of experienced experts to guide you through every step of your project. From designing and simulating wireless networks to implementing real-world solutions, our projects cover a wide spectrum, ensuring that you gain invaluable skills and knowledge that align with the trends of 2019-2020.
Join us at 1 Crore Project Centre Chennai, where your passion for wireless communication projects meets excellence and innovation. Our goal is to empower students and professionals alike to make a significant impact in the world of wireless technology. Discover the endless possibilities in Wireless Communication Projects for 2019-2020, and let us be your trusted partner on this exciting journey.
Wireless Communication Projects List
7 project titles
- A wireless sensor network is a group of specialized transducers with a communications infrastructure for monitoring and recording conditions at diverse locations.
- Commonly monitored parameters are temperature, humidity, pressure, wind direction and speed, illumination intensity, vibration intensity, sound intensity, power-line voltage, chemical concentrations, pollutant levels and vital body functions.
- A sensor network consists of multiple detection stations called sensor nodes, each of which is small, lightweight and portable.
- Every sensor node is equipped with a transducer, microcomputer, transceiver and power source.
- The transducer generates electrical signals based on sensed physical effects and phenomena. The microcomputer processes and stores the sensor output.
- The transceiver receives commands from a central computer and transmits data to that computer.
- The power for each sensor node is derived from a battery. Potential applications of sensor networks include