Adil Khan 10 months ago
AdiKhanOfficial #FYP Ideas

Implentation on hvdc from different sources supplies by using mulitplier circuits

In this contemporary world HVDC enables secure and stable asynchronous interconnection of power networks that operate on different frequencies. In addition, HVDC provides instant and precise control of the power flow .The scheme is intended & created to progress a HVDC of about 2KV comme

Project Title

Implentation on hvdc from different sources supplies by using mulitplier circuits

Project Area of Specialization

Electrical/Electronic Engineering

Project Summary

In this contemporary world HVDC enables secure and stable asynchronous interconnection of power networks that operate on different frequencies. In addition, HVDC provides instant and precise control of the power flow .The scheme is intended & created to progress a HVDC of about 2KV commencing an input AC supply source of 230V using the capacitors and diodes that are assembled in the form of ladder network centered on voltage multiplier idea. Usually transformers are used for stepping up of voltage in which the output of the secondary of the step up transformer rises the voltage besides declines the current. On other hand by using  voltage multiplier circuit which converts AC to DC for stepping up the voltage minimizing  the use of transformers. These Voltage multipliers are principally used to improve high voltages somewhere low current is mandatory. The notion of developing HVDC from different sources like ac and renivalbe sourc   is designated in this work which can be boosted up to about 10KV. For protection drive this work is delimited by means of a multiplication element of 8 so that the output would be surrounded by 2KV

Project Objectives

the main objectives of projects are 

  • the main objective of project is to transmit dc power in secondary distrubation side  in pakistan the dc poweer is transmitted at higher voltage at primary transmision side 
  • we design the project on basis that a village can be power by their own sources like solar panels and small kv genrators that run differnet fuel and these smal genrate voltage first convert into dc then step up to 10 kv  by using multiplier circuit  easily and they can powerr the whole smal town 
  • replacement of transformer by step uping dc through capacitors 
  • IPPs wil share their power thorugh dc transmision line  avoiding the use of transformers

Project Implementation Method

The  main process of this experimental implementation  for combine the  high voltage .We can make the HVDC up to 1kv  by means of single phase AC supply. It contains of rectifier circuit which changes AC supply into DC, amplifier circuit that amplifies the transformed DC power[10]. The voltage multiplier circuit  of ladder network converts AC to a higher DC voltage level and potential divider through 10:1.when 230volt ac is complete to rectifier.

 Generally rectifier is changing AC to DC. This distended voltage is agreed to the voltage multiplier circuit, and the  electrical energy multipliers phase up moderately low power into tremendously elevated power standards. Because of such circuit, that the voltage across each stages of cascade is identical to twice the peak input v. (i.e. V max=2*v max). The elevated energy is make to get-together of multiplier course is extremely elevated.  So it don’t need a quantity by unassuming voltmeter .Thusmeans of 10:1 potential divider output voltage is amount

solar panel output is also stepup throgh ladder circuit and then asynchrosily operate these outputs  at single bus bar (transmision line)

Benefits of the Project

the benfits of proejct are 

  • the project is based on dc system by step up the voltages by ladder and multiplier circuit in secondary side distrubution ( industrail and customer ) so their is no use of trnasformer ac power is transmited in dc 
  • IPPs can supply the power to different smal towns  by smal genration stations and thorugh renivable source by stepup voltages and trnasmit 
  • minimum loss of energyby transmiting in dc  as  campared to  transmison loss due to ac and transformer loss 

Technical Details of Final Deliverable

The  main process of this experimental implementation  for combine the  high voltage .We can make the HVDC up to 1kv  by means of single phase AC supply. It contains of rectifier circuit which changes AC supply into DC, amplifier circuit that amplifies the transformed DC power[10]. The voltage multiplier circuit  of ladder network converts AC to a higher DC voltage level and potential divider through 10:1.when 230volt ac is complete to rectifier.

 Generally rectifier is changing AC to DC. This distended voltage is agreed to the voltage multiplier circuit, and the  electrical energy multipliers phase up moderately low power into tremendously elevated power standards. Because of such circuit, that the voltage across each stages of cascade is identical to twice the peak input v. (i.e. V max=2*v max). The elevated energy is make to get-together of multiplier course is extremely elevated.  So it don’t need a quantity by unassuming voltmeter .Thusmeans of 10:1 potential divider output voltage is amount

solar panel output is also stepup throgh ladder circuit and then asynchrosily operate these outputs  at single bus bar (transmision line)

Final Deliverable of the Project

HW/SW integrated system

Core Industry

Others

Other Industries

Energy

Core Technology

Others

Other Technologies

Clean Tech

Sustainable Development Goals

Decent Work and Economic Growth, Industry, Innovation and Infrastructure, Climate Action

Required Resources

Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
solar panel Equipment190009000
step down transformers Equipment33501050
multiplier circuit chain Equipment37002100
capacitors Equipment2030600
volt meter AC Equipment38002400
ammeter ac Equipment38002400
volt meter dc Equipment38002400
ammeter dc Equipment38002400
protectin relays from under voltage and highvoltage Equipment325007500
project report book Miscellaneous 420008000
Total in (Rs) 37850
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