Choose an industrial embedded control system and write a


Choose an industrial embedded control system and write a report of a minimum of 20000 words covering the following aspects: 

1 Describe the basic elements and operation of the chosen embedded control system.

2 Assume that the chosen system contains first and second order elements which are discrete or continuous. Use MATLAB commands to examine the time domain behaviour of these elements. Explain the differences between the theoretical values for step and impulse responses and the simulated results.

3 Use MATLAB commands to examine the frequency domain behaviour of the discrete and continuous elements. Examine the differences between the theoretical values for Bode diagrams and the simulated results.   

4 Explain what changes should be made in the chosen system so it will become capable to take control over its energy use by employing digital technologies. Discuss about the adoption of a comprehensive approach that considers cost benefit analysis, flexibility, etc.

5 Examine the robust control methods which could be used for increasing the performance and energy efficiency of the chosen embedded control system. 

6 General aspect of assignment (introduction, method, conclusions,)

Write a report in 

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Basic Computer Science: Choose an industrial embedded control system and write a
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4/20/2016 6:34:29 AM

Give this assignment on the given submission date and follow each rule Choose an industrial embedded control system and write a report of a minimum of 20000 words covering the subsequent facets: 1 Describe the basic elements and operation of the chosen embedded control system. 2 Suppose that the chosen system encloses 1st and second order elements which are discrete or continuous. Use MATLAB commands to examine the time domain behavior of such elements. Describe the differences between the theoretical values for step and impulse answers and the simulated consequences. 3 Use MATLAB commands to observe the frequency domain behavior of the discrete and continuous elements. Observe the dissimilarities between the theoretical values for Bode diagrams and the simulated results.