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I am an electrical engineering graduate.
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Talks by Deep Learning
There are lot's of problem that comes to the circuit theory in electrical and electronics enginee... more There are lot's of problem that comes to the circuit theory in electrical and electronics engineering. For simple problems it wouldn't be much problem to obtain the basic nature of current and voltage at transient period like switching. But for complex problems it would be tedious and time consuming. So, with the development of fast operating computers and efficient softwares, calculation and simulation of those circuits can easily visualized. But still, the underlying principles and theories should be understood before applying them to computer solution. In this article, we will see a circuit theory problem and solve it with analytical method using laplace method and using MATLAB/SIMULINK. First we derive the basic circuit equation and its Laplace transform and the inverse of transform is determined from MAT-LAB. The time domain equation is then plotted in MATLAB which is finally compared with the result that obtained from SIMULINK. Let us take a circuit below: 100 V
Drafts by Deep Learning
— Electricity has now been Interconnected power system has been an inherent part of the todays el... more — Electricity has now been Interconnected power system has been an inherent part of the todays electrical generation. It has becoming more and more complex as there are multiple ways of generations, transmission and distribution. So there is great challenge for proper flow of power and ensuring the system stability. Despite the various use of classical controllers (mechanical switching devices), the implementation of high performance devices is encouraged. The modern system that has the ability of varying the power flow parameters like voltage, impedance, admittance, power angle, damping oscillation etc. in order to enhance the power flow capability is FACTS (Flexible Alternating Current Transmission). Among various FACTS devices, SVC is one of the most popular, reliable and economic controller used in modern power system. It is acquired to have very good design and performance analysis of the SVC device for its better working in the power network. Static Var Compensators are being increasingly applied in electric transmission systems to economically improve voltage control and post-disturbance recovery voltages that can lead to system instability. An SVC provides such system improvements and benefits by controlling shunt reactive power sources, both capacitive and inductive, with power electronic switching devices.
There are lot's of problem that comes to the circuit theory in electrical and electronics enginee... more There are lot's of problem that comes to the circuit theory in electrical and electronics engineering. For simple problems it wouldn't be much problem to obtain the basic nature of current and voltage at transient period like switching. But for complex problems it would be tedious and time consuming. So, with the development of fast operating computers and efficient softwares, calculation and simulation of those circuits can easily visualized. But still, the underlying principles and theories should be understood before applying them to computer solution. In this article, we will see a circuit theory problem and solve it with analytical method using laplace method and using MATLAB/SIMULINK. First we derive the basic circuit equation and its Laplace transform and the inverse of transform is determined from MAT-LAB. The time domain equation is then plotted in MATLAB which is finally compared with the result that obtained from SIMULINK. Let us take a circuit below: 100 V
— Electricity has now been Interconnected power system has been an inherent part of the todays el... more — Electricity has now been Interconnected power system has been an inherent part of the todays electrical generation. It has becoming more and more complex as there are multiple ways of generations, transmission and distribution. So there is great challenge for proper flow of power and ensuring the system stability. Despite the various use of classical controllers (mechanical switching devices), the implementation of high performance devices is encouraged. The modern system that has the ability of varying the power flow parameters like voltage, impedance, admittance, power angle, damping oscillation etc. in order to enhance the power flow capability is FACTS (Flexible Alternating Current Transmission). Among various FACTS devices, SVC is one of the most popular, reliable and economic controller used in modern power system. It is acquired to have very good design and performance analysis of the SVC device for its better working in the power network. Static Var Compensators are being increasingly applied in electric transmission systems to economically improve voltage control and post-disturbance recovery voltages that can lead to system instability. An SVC provides such system improvements and benefits by controlling shunt reactive power sources, both capacitive and inductive, with power electronic switching devices.