Exam Details
Subject | wireless sensor networks | |
Paper | ||
Exam / Course | b.e.(electronics and instrumentation engineering) | |
Department | ||
Organization | SETHU INSTITUTE OF TECHNOLOGY | |
Position | ||
Exam Date | May, 2017 | |
City, State | tamil nadu, pulloor |
Question Paper
Reg. No.
B.E. B.Tech. DEGREE EXAMINATION, MAY 2017
Elective
Electronics and Communication Engineering
01UEC906 WIRELESS SENSOR NETWORKS
(Regulation 2013)
Duration: Three hours Maximum: 100 Marks
Answer ALL Questions
PART A (10 x 2 20 Marks)
1. Bring out the difference between Adhoc networks and wireless sensor networks.
2. What are the enabling technologies for WSN?
3. Give the hardware components in sensor node architecture.
4. State the use of gateways.
5. Differentiate between active and passive sensors.
6. Define energy efficient routing.
7. What are the characteristics of transceiver?
8. What is time synchronization?
9. Mention the various types of motes.
10. List out the node-level simulators.
Question Paper Code: 31487
2
31487
PART B x 16 80 Marks)
11. Describe the challenges for designing a wireless sensor networks.
Explain the collaborative processing in WSN.
Or
Brief note on the home control and industrial control applications of WSN.
12. Explain about energy consumption of sensor nodes in detail.
Or
Explain the optimization goals and figure of merit of WSN.
13. Discuss the principle of SMAC protocol.
Or
Describe in details about the Geographic routing with and without positions.
14. Illustrate the design and structure of transceiver in WSN.
Or
Briefly explain the localization algorithms in wireless sensor network.
15. Elaborate the various examples of operating systems in sensor network.
Or
Write short notes on node-level software platforms.
Explain state-centric programming.
B.E. B.Tech. DEGREE EXAMINATION, MAY 2017
Elective
Electronics and Communication Engineering
01UEC906 WIRELESS SENSOR NETWORKS
(Regulation 2013)
Duration: Three hours Maximum: 100 Marks
Answer ALL Questions
PART A (10 x 2 20 Marks)
1. Bring out the difference between Adhoc networks and wireless sensor networks.
2. What are the enabling technologies for WSN?
3. Give the hardware components in sensor node architecture.
4. State the use of gateways.
5. Differentiate between active and passive sensors.
6. Define energy efficient routing.
7. What are the characteristics of transceiver?
8. What is time synchronization?
9. Mention the various types of motes.
10. List out the node-level simulators.
Question Paper Code: 31487
2
31487
PART B x 16 80 Marks)
11. Describe the challenges for designing a wireless sensor networks.
Explain the collaborative processing in WSN.
Or
Brief note on the home control and industrial control applications of WSN.
12. Explain about energy consumption of sensor nodes in detail.
Or
Explain the optimization goals and figure of merit of WSN.
13. Discuss the principle of SMAC protocol.
Or
Describe in details about the Geographic routing with and without positions.
14. Illustrate the design and structure of transceiver in WSN.
Or
Briefly explain the localization algorithms in wireless sensor network.
15. Elaborate the various examples of operating systems in sensor network.
Or
Write short notes on node-level software platforms.
Explain state-centric programming.
Other Question Papers
Subjects
- advanced sensor
- analog circuits
- analog communication
- analytical instruments
- antenna and wave propagation
- application of instrumentation in aerospace and navigation
- applied digital signal processing
- biomedical instrumentation
- circuit theory
- communication engineering
- computer architecture and organization
- control engineering
- data communication and networks
- data structures and algorithm analysis
- data structures and algorithms
- digital communication
- digital electronics
- digital electronics and design
- digital image processing
- digital signal processing
- electrical circuits and networks
- electrical machines
- electrical measurements
- electromagnetic fields
- electronic circuits
- electronic measurements and instrumentation
- embedded and real time systems
- environmental monitoring instruments
- environmental science and engineering
- fibre optics and laser instruments
- high speed networks
- industrial data networks
- industrial electronics
- industrial instrumentation – ii
- industrial instrumentation-i
- information theory and coding
- instrumentation for power plants
- instrumentation system design
- laser and fiber optics instrumentation
- linear control engineering
- linear integrated circuits and applications
- logic and distributed control systems
- microprocessors and interfacing
- microprocessors microcontrollers and applications
- microwave engineering
- mobile ad-hoc networks
- modern electronic instrumentation
- nano electronics
- numerical methods
- optical communication and networks
- principles of electrical machines
- probability and random processes
- process control instrumentation
- project management and finance
- qualitative and quantitative aptitude
- real time embedded systems architecture
- reliability and safety engineering
- robotics and automation
- satellite communication principles and applications
- sensors and transducers
- signals and systems
- thermodynamics and fluid mechanics
- transforms and partial differential equations
- transmission lines and waveguides
- value education and human rights
- vlsi design
- vlsi system design
- wireless communication systems
- wireless sensor networks