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When to use I²R, V²/R or VI while calculating Electric Power?

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I came across a question that was asked to me quite a couple of time: When to use I²R, V²/R or VI while calculating power? At first, the question looks simple and as if it needs no formal explanation but that's not the case. Use of any of them will give the correct result provided that you apply it correctly. Correct application is possible only when you understand the type of circuit you are dealing with. Another important point is to use the one which is going to take less time and help you calculate easily. All of the three equations tell the same thing but their usage is subject to the type of problem you're trying to solve. Let us understand when, how an what to use while calculating power in an electrical circuit.

Working & Application of a Variable Voltage Variable Frequency Drive (VVVfD)

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Variable Voltage Variable Frequency Drive (VVVfD) is one of the best and efficient methods of starting an Induction Motor Drive as well as it provides a smooth and wide range of Torque-Speed control. It saves electrical power and provides good motor starting and running characterstics. VVVfD controls the V/f (Volt/Hz) fraction to let the motor drive achieve good Torque-Speed characterstics as required. Hence it is also called, VSD - Variable Speed Drive or AFD - Adjustable Frequency Drive or Inverter based Drive as it uses Inverter to achieve the set points.  But how VVVfD works and why it is better than various other methods of Starting and Speed Control of Induction Motor based applications. Let's discuss the Theory, Working, Advantages and Applications of a VVVfD in detail.          

Corona Discharge & Corona losses in a Transmission Line.

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 *Note: Not to be confused with Coronavirus or CoVID-19... Corona Discharge is a phenomenon that happens around a High Voltage Transmission Line in which the air surrounding the surface of the conductor glows bluish or greenish and a hissing sound is produced. Mathematically speaking, when the maximum Electric Field Intensity equals the dielectric strength of the medium around the transmission line, the voltage of the transmission line at this point is known as the Critical Disruptive Voltage. Beyond this voltage, the Corona phenomenon is seen on the line. Let's understand each of these things and what exactly is corona discharge, corona power loss and how to control it...

Working of Ignition System in an Internal Combustion Engine

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IC Engine or Internal Combustion Engine is the type of Engine used in automobiles. This engine detonates the air-fuel mixture inside a cylinder and the energy thus produced is converted into mechanical energy that exerts thrust on a piston inside the Engine Cylinder causing the rotation of the wheel connected or cranking. The detonation of the pressurized air-fuel mixture is done by a spark generated in the spark plug . The ignition system is an Electro-mechanical Time Controlled System that helps in accurate and adequate spark generation at the spark-plug gap. Let's understand how exactly this ignition system works and what is its working principle. A very interesting topic indeed!

What exactly causes lightning in the clouds and how to avoid them?

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L ightning followed by a thunderbolt is a common phenomenon while it's raining heavily or when it is tending to rain. Lightning strikes are one of the many natural causes common for so many deaths or injuries around the world. About 240,000 cases of lightning strike happen every year around the world and about 6000 people lose their lives every year. As of June 2020, nearly 100-120 people have already lost their lives in northern India due to lightning. But what induces these lightning strikes? Why they are lethal and common? In this article, I will try to explain the cause of lightning in a simple manner and also how to avoid it. Lightning is an electrical discharge phenomenon. Any such thing happens between two opposite electrical charges separated by a distance. The hot air from the ground rises up and cools down to form water and eventually to smaller pieces of ice (due to the freezing temperatures in the upper atmosphere). These water droplets and ice al

Distribution Factor & Mitigation of Harmonics in an Electrical Machine

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Harmonics in an Electrical Machine is a great problem as it affects the maximum torque in an AC motor and maximum generated EMF in case of an Alternator. Harmonics is generated because of the non-linear behavior of the core material (the material that carries the magnetic field flux) evident from the B-H curve.  Hence elimination or mitigation of Harmonics from the machine is important. This can be done by suitably designing the machine. One such design aspect is the Distribution Factor.  There are two types of winding in an Electrical Machine, Concentrated Winding and Distributed Winding . The term 'Distribution Factor' comes from Distributed type of winding. Let's understand the difference between the two and how Distribution Factor in a Distributed Winding can help in eliminating Harmonics of nth order. Download PDF Another Design aspect responsible for mitigation of Harmonics is Pitch Factor. Click here to know more about Pitch Factor.

What is Pitch Factor? | Mitigation of Harmonics in an Electrical Machine...

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Harmonics is a big problem in any Electrical Machine as it affects the torque of a motor or lowers the effective Electrical power from a generator. But it can be removed effectively by taking care of a winding parameter known as "Pitch Factor". What is pitch factor and how it reduces the harmonic content in the waveform? Let's find out...

Switching off lights for 9 mins | Grid Failure? Why & how was it managed...

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Switching off lights for 9 mins would have resulted in a blackout but Why? What's the impact of sudden unloading on Power Plants and how was it managed then? Let's find out...