Normalized response of a dynamic system refers to:a)Characteristic fea...
Normalization refers to the desired to the reference value and normalized response of the dynamic system refers to the characteristic feature of a response due to specific excitation irrespective of its amplitude.
View all questions of this test
Normalized response of a dynamic system refers to:a)Characteristic fea...
Normalized response of a dynamic system refers to the characteristic feature of a response due to a specific excitation, irrespective of its amplitude. It is a measure of how the system responds to a given input, regardless of the magnitude of that input.
To understand this concept better, let's break down the options given:
a) Characteristic feature of a response due to specific excitation irrespective of its amplitude: This option correctly describes the concept of a normalized response. It implies that the response of a dynamic system is analyzed in terms of its characteristics, regardless of the amplitude of the input signal.
b) Response of dynamic system divided by its maximum value: This option refers to scaling the response by dividing it by its maximum value. While normalization sometimes involves scaling, it is not limited to dividing by the maximum value. Normalization is a broader concept that takes into account the inherent characteristics of the system's response.
c) Response of dynamic system divided by a standard value: This option suggests dividing the response by a standard value. However, normalization does not necessarily involve dividing by a fixed standard value. It focuses more on understanding the system's behavior relative to the specific input excitation.
d) None of the mentioned: This option is incorrect since option 'A' accurately describes the concept of normalized response.
In summary, the normalized response of a dynamic system is determined by analyzing the characteristic features of the system's response to a specific excitation, irrespective of the amplitude of that excitation. It allows for a better understanding of the system's behavior and provides a basis for comparison with other systems or inputs.