Unit 6: Embedded system and its application - Subjective Questions

ECE131 — Basic Electrical And Electronics Engineering • Practice Questions with Detailed Answers

20 questions

1

Define an embedded system and explain its major characteristics with suitable examples.

2

Explain the basic components and working structure of an embedded system.

3

Compare a microprocessor and a microcontroller with respect to architecture, memory, peripherals, cost, power consumption, and applications.

4

Explain the factors that should be considered while selecting a microcontroller for an embedded application.

5

Describe the Arduino platform and explain its important hardware and software features.

6

Explain the interfacing of a sensor with an Arduino board and describe the steps involved in acquiring sensor data.

7

Distinguish between analog and digital sensors, and explain the role of signal conditioning in sensor systems.

8

Explain the architecture of an IoT system and describe the functions of its sensing, communication, processing, and application layers.

9

Explain the role of IoT and cloud computing in condition monitoring of plant processes.

10

Discuss the use of IoT and cloud computing in healthcare applications.

11

Explain how IoT and cloud computing are applied in agriculture to develop smart farming systems.

12

Describe the role of IoT and cloud computing in manufacturing and explain the concept of smart manufacturing.

13

Explain the applications and benefits of IoT and cloud computing in automobiles.

14

Explain the application of IoT and cloud computing in a smart grid.

15

Compare edge computing and cloud computing in an IoT-based embedded system.

16

Describe the complete data flow in an IoT-based condition-monitoring system, from sensing to decision-making.

17

Explain real-time operation in embedded systems and discuss the difference between hard and soft real-time systems.

18

Discuss the importance of communication protocols in embedded and IoT systems. Compare UART, SPI, I2C, and CAN briefly.

19

Explain the importance of cybersecurity and data privacy in IoT-based embedded systems.

20

Explain the importance of calibration and data analytics in an IoT sensor system.