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Wireless Communication IEEE Projects 2016-2017 Chennai
Academic Year
2016 – 2017
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About IEEE Wireless Communication Projects
At 1 Crore Project Centre Chennai, we take pride in being pioneers in the field of Wireless Communication Projects for the years 2016-2017. Our commitment to excellence and innovation has made us a trusted hub for students and researchers seeking hands-on experience in this dynamic domain. Whether you’re a student looking for a comprehensive project or a researcher aiming to push the boundaries of wireless technology, we offer a diverse range of projects to suit your needs.
Our team of experienced professionals and experts in the field of wireless communication is dedicated to guiding and supporting you throughout your project journey. We provide a conducive environment for learning and experimentation, ensuring that you gain valuable insights and skills that will be beneficial for your academic and professional future. Explore our project offerings to find the perfect match for your interests and goals.
When you choose 1 Crore Project Centre Chennai for your Wireless Communication Projects 2016-2017, you’re choosing a partner committed to your success. We understand the significance of staying updated with the latest industry trends, and our projects reflect this dedication. Join us on a journey of discovery and innovation as we navigate the exciting world of wireless communication together. Contact us today to embark on your project and take your academic career to new heights.
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