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Effects of Feedback in Control System

Feedback is an important concept in electronics and electrical engineering. It is used to reduce the error between the reference input and the system output. The reduction of system error is merely one of the many important effects that feedback may have on a system. Feedback also affects the performance of features such as security, bandwidth, gain, impact, and sensitivity. Feedback plays an important role in improving the performance of the control systems. In this article, we will take a closer look at the importance and impact of feedback in management.

What is Feedback in Control System ?

Feedback is an important concept in engineering management and plays an important role in monitoring and controlling desired behaviour in many processes and devices. Feedback is a process of collecting information about the system output and using this information to adjust the output, thus creating a closed-loop control system. This loop provides continuous monitoring and control to ensure the system operates within limits and achieves its intended objectives.

Next, we will discuss components of feedback which contain:



Components of Feedback

The feedback control system consists of five basic components:

The return of the output or part of the output to the input side and being used as part of the input to the system is called feedback. Feedback plays an important role in order to improve the performance of the control system.

Types Of Feedback

There are two types of feedback:

Positive Feedback

Good comment; Adds references, R(s) and comments.

Positive Feedback

Evaluate changes to the feedback control system accordingly

T = G / 1 – GH

Where,

Negative Feedback

Negative feedback reduces the error between the input data R(s) and the output. Given block diagram shows the negative feedback control systems.

Negative Feedback

Consider the transfer function of Negative Feedback Control System is

T = G / 1 + GH

Where,

Effects of Feedback in Control System

The role of feedback in management is to ensure that the system operates as expected by comparing its output with the expected output and making adjustments accordingly. Feedback allows the system to correct errors, compensate for interruptions, and maintain stability. It enables control systems to better achieve their goals by increasing accuracy, reliability and performance. Feedback is essential for energy management to work well and increase its effectiveness.

Effects of Feedback in Control System is measured by the factors like :

1. Effect of Feedback on Overall Gain

Given Below is the Block Diagram of Effect of Feedback on Overall Gain

Effect of Feedback on Overall Gain

Feedback affects the Gain G of a non-feedback system by a factor 1/( 1 GH). The system is said to have negative feedback, since a disadvantage sign is assigned to the feedback signal. The volume GH may itself include a negative feedback, since a disadvantage sign is assigned to the feedback signal. The volume GH may itself include a negative sign, so the general effect of feedback is that it may increase or drop the gain. In a practical control system, G and H are functions of frequency, so the magnitude of( 1 GH) may be lesser than 1 in one frequency range but lower than 1 in another. thus, feedback could increase the system gain in one frequency range but drop it in another. So Transfer Function with Feedback is

T( s) = C( s)/ R( s) = G/ 1 GH

So Effect can be studied from Transfer Function

2. Effect of Feedback on Stability

Given Below is the Block Diagram of Effect of Feedback on Stability

Effect of Feedback on Stability

A system is said to be stable, if its output is under control, Otherwise it is said to be unstable.

Stability is a notion that describes, whether the system will be able to follow the input command or be used in general. In loose terms, if the System is out of control then it is called unstable.

Referring equation:

M = G / 1 + GH

If GH = -1 the output of the system is infinite for any finite input and the system is said to be unstable.

3. Effect of Feedback on Sensitivity

Given Below is the Block Diagram of Effect of Feedback on Sensitivity

Effect of Feedback on Sensitivity

Sensitivity often are important in the design of control systems. Generally speaking, a good control system should be responsive to changes, but also responsive to commands. Let us investigate what effect of feedback has on the sensitivity to parameter variations.

So the Transfer Function with feedback is:

T(s) = C(s) / R(s) = G / 1 + GH

Sensitivity is defined as percentage change in transfer function to percentage change in gain of the system.

S = %change in T(s) / %change in G(s)

Here,

T(s) is Transfer Function of the system

G(s) is Gain of the system

SGT = (dT/T *100) / ( dG /G *100)

SGT = dT/dG * G/T

Sensitivity is defined as change in output w.r.t input whereas in terms of function it as defined as change in transfer function w.r.t to change in gain of the system.

So effect can be studied from Transfer Function

4. Effect of Feedback on Noise

Given Below id the Block Diagram of Effect of Feedback on Noise

Effect of Feedback on Noise

Feedback reduces the impact of noise and affects physical activity.

In general, Feedback also has effects on performance parameters such as bandwidth, impedance, transient response and frequency response,

C(s)/Td(s)=1/(G(s).H(s))

C(s)=Td(s)/G(s).H(s)

where,

C(s) is the system output

R(s) is the reference input

G(s) is the open-loop gain of the system

H(s) is the feedback of the system

Td(s) is the External noise or disturbance

Now, we can realize the effect of Td(s) on output,

Advantages and Disadvantages of Effects of Feedback in Control System

Here, we will see some list of advantages and disadvantages of effects of feedback in control system :

Advantages of Effects of Feedback in Control System

Disadvantages of Effects of Feedback in Control System

Applications of Effects of Feedback in Control System

Here, we will see some list of applications of effects of feedback in control system :

Conclusion

Feedback is a fundamental component of control systems. They help to maintain system stability, improves accuracy by removing the error by comparing the desired output with the actual output. Feedback is used in every aspects like robots, airplanes, cars, medical equipment, home comfort or communications, the feedback system ensures everything goes right. They are important in the world of technology and engineering because they help things run better and more reliably.

Effects of Feedback in Control System – FAQs

What are the benefits of using feedback in management?

In a closed loop system by using feedback we can control the controller output to reduce error. By using this the accuracy of the system is maintained.

Why is feedback important for stability in control systems?

Feedback in control system maintains the stability and accuracy of the system. In this the output is adjust based on actual performance.

How do engineers design feedback control systems?

They use math and special rules to figure out how to make systems work well, choosing the right tools and testing things out.

What challenges do feedback control systems face?

It may be tricky for complex systems.


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