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Free Expert Guides on Power Systems, Circuit Design & Electrical Troubleshooting

Access free engineering resources from IEE Business—covering power design, circuit layout, equipment selection, and troubleshooting. Expert-developed guides help engineers, procurement, and project teams make better decisions. Stay ahead on smart grids, renewables, efficiency, and AI tools. Improve reliability, reduce downtime, and enhance outcomes with real-world solutions. Explore our knowledge hub today.
What is an Integral Controller?
What is an Integral Controller?Integral controller definitionIntegral controller is another basic control algorithm in automatic control systems, usually represented by the letter "I". The integral controller adjusts the output of the controller by accumulating error signals to eliminate steady-state errors in the system.Basic principleThe basic idea of the integral controller is to accumulate error signals during the control process and use the accumulated results to adjust the output of the co
09/19/2024
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What is a Proportional Controller?
What is a Proportional Controller?Proportional controller is one of the most basic control algorithms in automatic control systems, usually represented by the letter "P". The proportional controller controls the response of the system by adjusting the output signal to be proportional to the error signal.Basic principleThe basic idea of the proportional controller is to reduce the system error by adjusting the output signal of the controller. Error is the difference between the expected value and
09/19/2024
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Types of Controllers
Controller DefinitionIn control systems, a controller is a mechanism that seeks to minimize the difference between the actual value of a system (i.e. the process variable) and the desired value of the system (i.e. the setpoint). Controllers are a fundamental part of control engineering and used in all complex control systems.Before we introduce you to various controllers in detail, it is essential to know the uses of controllers in the theory of control systems. The important uses of the control
09/19/2024
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Routh Hurwitz Stability Criterion
Routh Hurwitz Stability Criterion DefinitionIt is a method to determine the stability of a system using the characteristic equation.Hurwitz CriterionUsing the characteristic equation, we can create several Hurwitz determinants to determine the system’s stability. The characteristic equation of the system is defined as follows:There are n determinants for an nth order characteristic equation.Here is how to write determinants from the coefficients of the characteristic equation. Follow these steps
09/18/2024
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Root Locus Plot in Control Systems
Root Locus Technique DefinedRoot locus in control system is a graphical approach used to analyze the effects of varying system parameters on the stability and performance of a control system.Advantages of Root Locus Technique Root locus technique in control system is easy to implement as compared to other methods. With the help of root locus we can easily predict the performance of the whole system. Root locus provides the better way to indicate the parameters.This article will frequently use sp
09/18/2024
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What is State Space Analysis?
What is State Space Analysis?State Space Analysis DefinitionState space analysis of control systems is a method to analyze both simple and complex systems using a set of variables to describe their behavior over time.State Space EquationsLet us derive state space equations for the system which is linear and time invariant.Let us consider multiple inputs and multiple outputs system which has r inputs and m output.Where, r = u1, u2, u3 ……….. ur.And m = y1, y2 ……….. ym.Now we are taking n state var
09/18/2024
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Control Systems Block Diagram
Block Diagram DefinitionA block diagram is used to represent a control system in diagram form. In other words, the practical representation of a control system is its block diagram. Each element of the control system is represented with a block and the block is the symbolic representation of the transfer function of that element.It is not always convenient to derive a complex control system’s entire transfer function in a single function. It is easier to derive the transfer function of the contr
09/18/2024
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Transient and Steady State Response in a Control System
Transient Response of Control SystemAs the name suggests transient response of control system means changing so, this occurs mainly after two conditions and these two conditions are written as follows-Condition one : Just after switching ‘on’ the system that means at the time of application of an input signal to the system.Condition second : Just after any abnormal conditions. Abnormal conditions may include sudden change in the load, short circuiting etc.Steady State Response of Control SystemS
09/15/2024
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Signal Flow Graph of Control System
Signal Flow Graph DefinitionA signal flow graph simplifies control system diagrams by using nodes and branches instead of blocks and summing points.Rules for Drawing Signal Flow Graph The signal always travels along the branch towards the direction of indicated arrow in the branch. The output signal of the branch is the product of transmittance and input signal of that branch. Input signal at a node is summation of all the signals entering at that node. Signals propagate through all the branches
09/15/2024
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Digital Data of Control System
Digital Data DefinitionDigital data in control systems consists of discrete or sampled data that represents continuous signals in a digital format.Sampling ProcessSampling is the conversion of analog signals to digital signals using a sampler, which switches ON and OFF.The sampling process converts analog signals into digital signals using a switch, called a sampler, that turns ON and OFF. For an ideal sampler, the output pulse width is very small (almost zero). In discrete systems, Z transforma
09/15/2024
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