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Answer :

The steady state error is defined as the value of error as time tends to infinity.

Related questions

Description : What are the three constants associated with a steady state error.

Last Answer : Positional error constant Velocity error constant Acceleration error constant

Description : What is steady state error?

Last Answer : The steady state error is the value of error signal e(t) when t tends to infinity.

Description : What are static error constants?

Last Answer : The Kp Kv and Ka are called static error constants.

Description : What are the main advantages of generalized error co-efficient?

Last Answer : i) Steady state is function of time. ii) Steady state can be determined from any type of input

Description : Define Transfer Function?

Last Answer : Transfer Function of a control system is defined as: i) Ratio of Laplace transform of Output to the Laplace transform of the Input with zero initial conditions ii) Transfer function is defined as the Laplace transform of Impulse response of the system with zero initial conditions

Description : Define Gain cross over?

Last Answer : The gain cross over frequency is the frequency at which the magnitude of the open loop transfer function is unity.

Description : Define Relative stability

Last Answer : Relative stability is the degree of closeness of the system and it is an indication of strength or degree of stability.

Description : Define phase lead?

Last Answer : A positive phase angle is called phase lead.

Description : Define Phase lag

Last Answer : A negative phase angle is called phase lag.

Description : Define Corner frequency?

Last Answer : The frequency at which the two asymptotic meet in a magnitude plot is called corner frequency.

Description : Define Cut-off rate?

Last Answer : The slope of the log-magnitude curve near the cut-off is called cut-off rate. The cut-off rate indicates the ability to distinguish the signal from noise.

Description : Define Corner frequency?

Last Answer : The frequency at which the two asymptotic meet in a magnitude plot is called corner frequency.

Description : Define Gain cross over?

Last Answer : The gain cross over frequency is the frequency at which the magnitude of the open loop transfer function is unity.

Description : Define Relative stability

Last Answer : Relative stability is the degree of closeness of the system, it is an indication of strength or degree of stability.

Description : Define Phase lag and phase lead?

Last Answer : A negative phase angle is called phase lag. A positive phase angle is called phase lead.

Description : Define Corner frequency?

Last Answer : The frequency at which the two asymptotic meet in a magnitude plot is called corner frequency.

Description : Define Gain cross over?

Last Answer : The gain cross over frequency ωgc is the frequency at which the magnitude of the open loop transfer function is unity.

Description : Define Phase cross over?

Last Answer : The frequency at which, the phase of open loop transfer functions is called phase cross over frequency ω

Description : Define –Gain Margin?

Last Answer : The gain margin, kg is defined as the reciprocal of the magnitude of the open loop transfer

Description : Define Cut-off rate?

Last Answer : The slope of the log-magnitude curve near the cut-off is called cut-off rate. The cut-off rate indicates the ability to distinguish the signal from noise.

Description : Define –Resonant frequency

Last Answer : The frequency at which resonant peak occurs is called resonant frequency.

Description : Define –resonant Peak

Last Answer : The maximum value of the magnitude of closed loop transfer function is called resonant peak.

Description : Define Settling time.

Last Answer : Settling time is defined as the time taken by the response to reach and stay within specified error

Description : Define peak overshoot.

Last Answer : Peak overshoot is defined as the ratio of maximum peak value measured from the Maximum value to final value

Description : Define peak time.

Last Answer : The time taken for the response to reach the peak value for the first time is peak time.

Description : Define Rise time.

Last Answer : The time taken for response to rise from 0% to 100% for the very first time is rise time.

Description : Define Delay time.

Last Answer : The time taken for response to reach 50% of final value for the very first time is called delay time.

Description : Define Damping ratio.

Last Answer : Damping ratio is defined as the ratio of actual damping to critical damping.

Description : Define BIBO stability.

Last Answer : A linear relaxed system is said to have BIBIO stability if every bounded input results in a bounded output.

Description : Define thermal resistance.

Last Answer : The thermal resistance for heat transfer between two substances is defined as the ratio of change in temperature and change in heat flow rate.

Description : Define non touching loop.

Last Answer : The loops are said to be non - touching if they do not have common nodes.

Description : State – Angle criterion.

Last Answer : The Angle criterion states that s=sa will be a point on root locus for that value of s, _D(s) = _G(s) H(s) =odd multiple of 180°

Description : State-Magnitude criterion.

Last Answer : The magnitude criterion states that s=sa will be a point on root locus if for that value of s, | D(s) | = |G(s) H(s) | =1

Description : Frequency Domain Analysis in Control System

Last Answer : Frequency Response: The Frequency Response of the system is the steady state response of the system obtained as the output when a sinusoidal input signal is given to the system. For determining the ... of the system, adjust the gain of the control system and helps in designing the control system.

Description : Advantages of Frequency Domain Analysis

Last Answer : Advantages of Frequency Domain Analysis Frequency Response Analysis: In frequency response analysis the input to the control system is fed with a sinusoidal signal with different frequencies. The output ... system Frequency domain analysis can also be carried out for the non linear control systems.

Description : PI Controllers in Process System

Last Answer : PI controllers are used in many industrial control applications. The main purpose of using Proportional and Integral (PI) in process system is to improve the steady state accuracy of the ... requires higher values of the proportional and integral gains compared to gains required in PI controllers

Description : What is Zero of the system?

Last Answer : Zero of a function F(s) is a value at which the function F(s) becomes zero, where F(s) is a function of complex variable s.

Description : What is Pole of the system?

Last Answer : Pole of a function F(s) is the value at which the function F(s) becomes infinite, where F(s) is a function of the complex variable s.

Description : What are Test signals and their significance?

Last Answer : The knowledge of the input signal is required to predict the response of the system. In most of the systems input signals are not known ahead of the time and it is also difficult to ... the control system. The commonly used test signals are impulse, ramp, step signals and sinusoidal signals.

Description : How Time response of the system is divided?

Last Answer : Time response of the system consists of two parts: 1.Transient state response 2. Steady state response. Transient response of the system explains about the response of the system when the input ... other. Steady state response of the system shows the response as the time t, approaches infinity

Description : What is Time response of the control system?

Last Answer : Time response of the control system is defined as the output of the closed loop system as a function of time. Time response of the system can be obtained by solving the differential equations governing the system or time response of the system can also be obtained by transfer function of the system.

Description : What is Order of the system?

Last Answer : Order of the system is defined as the order of the differential equation governing the system. Order of the system can be determined from the transfer function of the system. Also the order of ... function. For nth order system for a particular transfer function contains 'n' number of poles.

Description : Explain Mechanical Translational System?

Last Answer : Model of mechanical translational system can be obtained by using three basic elements Mass, Spring and Dash-pot. Weight the mechanical system is represented by mass and is assumed to be ... represented by the spring Friction existing in a mechanical system can be represented by dash-pot.

Description : What is mathematical model of a control system?

Last Answer : Control system is a collection of physical elements connected together to serve an objective. The output and input relations of various physical system are governed by differential equations. ... the system can be studied by solving the differential equations for various input conditions.

Description : What are the basic properties of Signal Flow Graph?

Last Answer : The basic properties of the signal flow graph are: Signal Flow Graphs are applicable to linear systems It consists of nodes and branches. A node is a point representing a variable or signal. A ... the gain of the branch The algebraic equations must be in the form of cause and effect relationship

Description : What is S-domain and its significance?

Last Answer : By taking Laplace transform for differential equation in the time domain equations in S-domain can be obtained. L{F(t)}=F(s) S domain is used for solving the time domain differential equations easily by applying the Laplace for the differential equations.

Description : What is Signal Flow Graph?

Last Answer : A Signal Flow Graph is a diagram that represents a set of simultaneous linear algebraic equations. By taking Laplace transform the time domain differential equations governing a control system can be ... s-domain. The signal Flow graph of the system can be constructed using these equations.

Description : Where Servomechanism is used?

Last Answer : Servomechanism is used in control system where the output is pertained to vary the mechanical position of a device. Servo Mechanism is widely used in Governor value position control mechanism ... controls using power Thyristors. Servomechanism is also widely used in the robotic hand movements.

Description : What is the basic rule for Block Diagram Reduction Technique?

Last Answer : The rules of the Block Diagram reduction Techniques are designed in such a manner that any modifications made in the diagram will not alter the input and output relation of the system

Description : What is Time Invariant system?

Last Answer : Time Invariant System is one in which the input and output characteristics of the system does not change with time.