Tuesday, 4 October 2022

Solve Example of Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector

Solve Example of Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector

 

AIM: To Find out Resistance Between Point “A” & Point “B” In Below Network By Using Star(WYE) Delta Transformation Methods.

 Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector


Let’s Start:-

We have used before Nodal Method & Mesh Analysis Method, Now In This Below Network, We Can Easily Determine The Value Of equivalent resistance i.e, RAB through Star-Delta conversion.

We have Below Network.


Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector


Let Simplify The Network For Better Understanding, By Trimming Some Lines, As Below:-


Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector


As We can see the last network forms like Delta, Then Our Approach To Transform This Delta Into Star/Wye Connection.

Just Draw The Dots Line of resistance from each Nodal area to the center of delta to form star/wye, as per below:-

 

Wye Delta Transformation, WYE to Delta Conversion, Star Delta Connector

For finding value of each new star connector resistance (RA , RB ,  RC),  We can used Direct formula as learn in previous post, As Shown Below:-

 

star connector resistance (RA , RB ,  RC)

Now, The Circuit Simplified As:-

Here, We Can Use Mesh & Nodal Method For Simplify Our Equation For Next Level:-

(Note: Circuit Structure Are Same, Reform circuit for easy understanding)


Mesh & Nodal Method


So, RAB / Requivalent = R+ R+ R= 4Ω + 3.88Ω + 1.77Ω = 9.65Ω Answer

 

Hope This Help For You To Solve, Any Types Of Equation Based On Star Delta Transformation. If Any Query, Let Us Know In Comments.

 

Thanks for Reading & Learning. Best Of Luck!


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In This Below Topic, We Will Discuss About “Reading Problem Based On Thevenin's Theorem In Practical”.

Let’s Start To Find Answer By Solving Through Thevenin's Theorem Method.

(For Solving This Question, We Will Used OHM's Law As Well As "Kirchhoff's Voltage Law To Simplified Our Equation)

Aim:- Find The Current In 4Ω Resistance In The Below Network Circuit By Using Thevenin's Theorem Methods.

Reading Problem Based On Thevenin's Theorem In Practical

Solution: - For Solving The Value Of Current Through 4Ω Resistance, We Will Follow The Same Step As Discussed In Our Previous Post.

(Click Here To Revise Your Practice)



FOR RL: -

 HERE, RL= 4Ω


For Rth:-

Follow The Below Steps For Finding Thevenin's Equivalent Resistance For This Network:-

As Below:-

Thevenin's Equivalent Resistance


Here, Rth/RAB=1.5+10=11.5Ω

For Vth:-

Follow The Below Steps For Finding Thevenin's Equivalent Voltage For This Network:-

Thevenin's Equivalent Voltage

Finally, The Thevenin's Equivalent Circuit Is,

Thevenin's Equivalent Circuit

Note: Hope It Simplified Your Question And Answer Technique, Don’t Miss To Comments Your View. Thanks For Your Visit Our Website.


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