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Frequency range of bode magnitude and phases are decided by :
  • a)
    The lowest and higher important frequencies of dominant factors of the OLTF
  • b)
    The lowest and highest important frequencies of all the factors of the open loop transfer function
  • c)
    Resonant frequencies of the second factors
  • d)
    None of the above
Correct answer is option 'D'. Can you explain this answer?
Verified Answer
Frequency range of bode magnitude and phases are decided by :a)The low...
Answer: d
Explanation: T. F. = Kp (1+Tds)
There is only one zero which will give slope of +20dB/decade.
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Frequency range of bode magnitude and phases are decided by :a)The low...
Frequency range of Bode magnitude and phase plots is not determined by any of the options provided (options a, b, c). The frequency range of the Bode plots is determined by the user or the specific application requirements. The Bode plots can be generated over any desired frequency range based on the needs of the analysis.

The Bode magnitude plot represents the magnitude response of a system as a function of frequency. It shows how the system responds to different frequencies of input signals. The Bode phase plot represents the phase shift of the system as a function of frequency. It shows the phase relationship between the input and output signals at different frequencies.

The Bode plots are commonly used in control system analysis and design. They provide valuable insights into the frequency response characteristics of a system and can be used to analyze stability, gain margin, phase margin, and other important system properties.

To generate the Bode plots, the open-loop transfer function (OLTF) of the system is required. The OLTF is the transfer function of the system without any feedback. It represents the relationship between the input and output signals of the system.

Once the OLTF is known, the Bode plots can be generated by evaluating the transfer function at different frequencies. The frequency range for the Bode plots can be chosen based on the range of interest or the frequency characteristics of the system under analysis.

In summary, the frequency range of Bode magnitude and phase plots is not determined by the lowest or highest important frequencies of any factors of the OLTF or the resonant frequencies of any factors. The frequency range is user-defined and can be chosen based on the specific requirements of the analysis or application.
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Frequency range of bode magnitude and phases are decided by :a)The lowest and higher important frequencies of dominant factors of the OLTFb)The lowest and highest important frequencies of all the factors of the open loop transfer functionc)Resonant frequencies of the second factorsd)None of the aboveCorrect answer is option 'D'. Can you explain this answer?
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Frequency range of bode magnitude and phases are decided by :a)The lowest and higher important frequencies of dominant factors of the OLTFb)The lowest and highest important frequencies of all the factors of the open loop transfer functionc)Resonant frequencies of the second factorsd)None of the aboveCorrect answer is option 'D'. Can you explain this answer? for Electrical Engineering (EE) 2024 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared according to the Electrical Engineering (EE) exam syllabus. Information about Frequency range of bode magnitude and phases are decided by :a)The lowest and higher important frequencies of dominant factors of the OLTFb)The lowest and highest important frequencies of all the factors of the open loop transfer functionc)Resonant frequencies of the second factorsd)None of the aboveCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Frequency range of bode magnitude and phases are decided by :a)The lowest and higher important frequencies of dominant factors of the OLTFb)The lowest and highest important frequencies of all the factors of the open loop transfer functionc)Resonant frequencies of the second factorsd)None of the aboveCorrect answer is option 'D'. Can you explain this answer?.
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