Wireless power transmission

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ELECTRICAL PROJECTS

Wireless Power Transmission ELECTRICAL PROJECTS Project

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Wireless Power Transmission Overview:       

What Is Wireless Power Transmission(WPT)? Why Is WPT? History Of WPT Working Principle Of WPT Types Of WPT Advantages And Disadvantages Of WPT Conclusion

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Wireless Power Transmission What Is WPT?:  The Transmission Of Power From One Place To Another Without Using Wires, Cables, Or Chords.  But, The Wireless Power Transmission Is Made Possible By Using Various Technologies Like Microwave, Laser, And Em Waves.  Nikolas Tesla Realized The Concept Of Wireless Power Transfer.

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Wireless Power Transmission Why Not Wires? 

As Per Studies, Most Electrical Energy Transfer Is Through Wires.

Most Of The Energy Loss Is A Loss During Transmission • On an average, more than 30%. • In India, it exceeds 40%.

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Wireless Power Transmission History Of WPT:  Nikola Tesla in late 1890s  Pioneer of induction techniques  His vision for "world wireless system“  The 187 Feet Tall Tower To Broadcast Energy

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Wireless Power Transmission History Of WPT (Continue…)  All People Can Have Access To Free Energy  Due To Shortage Of Funds, Tower Did Not Operate  Tesla Was Able To Transfer Energy From One Coil To Another Coil  He Managed To Light 200 Lamps From A Distance Of 40 Km

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Wireless Power Transmission Block Diagram Of WPT:

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Wireless Power Transmission Working Principle Of WPT:  By Converting The AC Power To DC Power Using Rectifiers And Filters And Then Again Converting It Back To AC At High Frequency Using Inverters.  This Low Voltage High Frequency Ac Power Then Passes From The Transformer Primary To Its Secondary And Is Converted To Dc Power Using Rectifier, Filter And Regulator Arrangement.

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Wireless Power Transmission Types Of WPTs: 

Inductive Coupling

Microwave Power Transmission

Laser power Transmission

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Wireless Power Transmission Inductive Coupling:  It Is Most Prominent Methods Of Transferring Energy.  Used For Near-field Power Transmission.  The Power Transmission Takes Place Through Mutual Inductance Between The Two Conductive Materials

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Wireless Power Transmission Microwave Power Transmission: ďƒ˜

This Involves By Converting The AC Power To RF Power And Transmitting It Through Space And Again Reconverting It To AC Power At The Receiver.

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Wireless Power Transmission Laser Power Transmission: ďƒ˜

It involves the use of LASER beam to transfer power in the form of light energy.

ďƒ˜

The laser gets powered using sources like sun or any electrical generator and accordingly generates high intensity focused light.

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Wireless Power Transmission Laser Power Transmission Diagram:

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Wireless Power Transmission Advantages: 

No Wires

No E-waste

Efficient Energy Transfer

Unaffected By Day-night Cycle, Weather Or Season

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Wireless Power Transmission Disadvantages:   

Initial Cost Is High. High- Frequency Signal Must Be The Supply. Maintenance Is Complicated.

Applications:  

Wireless parking charger. Wireless electronic charger.

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Wireless Power Transmission Conclusion:  More Reliable Than Ground - Based Solar Power.  Low Maintenance Cost. But, Initially High Cost.  If We Develop This, We Need Not Bother About The Exhaustion Of Natural Resource.  In Near Future, The World Will Be Completely Powered With Wireless Technology.

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