Which one of the following conditions is justifying a second-order approximation ?

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  1. Closed loop zeros near the closed-loop second-order pole pair are nearly cancelled by the close proximity of higher-order closed-loop poles.
  2. Closed-loop zeros cancelled by the close proximity of higher-order closed-loop poles are far removed from the closed-loop second-order pole pair.
  3. Closed-loop zeros near the closed-loop second-order pole pair are not cancelled by the close proximity of higher-order closed-loop poles.
  4. Closed-loop zeros cancelled by the close proximity of higher-order closed-loop poles are far removed from the closed-loop second-order zero pair.

Answer (Detailed Solution Below)

Option 1 : Closed loop zeros near the closed-loop second-order pole pair are nearly cancelled by the close proximity of higher-order closed-loop poles.
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Detailed Solution

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Solution:

Second-order approximation of higher-order systems:
Certain higher-order systems can be approximated as second-order systems and can be characterized by the parameters in the preceding section.

The conditions are as follows:

  • Higher-order poles are much farther into the left half of the s-plane than the dominant second-order pair of poles. The response that results from a higher-order pole does not appreciably change the transient response expected from the dominant second-order poles.
  • Closed-loop zeros near the closed-loop second-order pole pair are nearly canceled by the close proximity of higher-order closed-loop poles.
  • Closed-loop zeros not canceled by the close proximity of higher-order closed-loop poles are far removed from the closed-loop second-order pole pair.
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