Design, Simulation, and System-Level Integration of a 2.4 GHz Microstrip Microwave Feeding Network Using ANSYS HFSS and Twin Builder

Job ID: 40319083

Budget: $10 – $30 USD

I’m looking for someone who can prepare a pre-recorded, step-by-step walkthrough with screen recording and voice explanation for my Microwave Engineering course project, which is based on ANSYS HFSS and ANSYS Twin Builder. I do not need a live session. I want a clear recorded video that I can watch later and use as a reference while building and documenting my own project.

My project is “Design and System-Level Integration of Antenna Microwave Feeding Network”. The main idea is to design a microstrip-based RF front-end / feeding network for antenna integration, starting from hand calculations, then building the physical EM models in HFSS, optimizing them, and finally exporting the HFSS blocks into Twin Builder for full system-level validation. The project requires realistic microwave design practice, electromagnetic modeling, system integration, and performance evaluation using HFSS and Twin Builder.

The project includes multiple required components, not just one simple line. The tasks include:

Microstrip transmission line design
Unequal T-junction power divider with 3:1 ratio
Unequal Wilkinson power divider with
P3/P2=1/3
P
3


/P
2


=1/3
Four-way corporate power divider using Wilkinson stages
Branchline coupler
Single-section directional coupler
Microstrip filter
Four-way divider with 45-degree progressive phase
Microstrip resonator
Rectangular cavity resonator
Three-port circulator
Final system-level integration in Twin Builder using exported HFSS S-parameter blocks

What I need from you in the video:

Start from the hand calculations using standard microwave design equations.
This should include, where relevant:
characteristic impedance
effective dielectric constant
guided wavelength
microstrip width and length
quarter-wave sections
coupling dimensions / resonator lengths / resistor values / phase-delay lines, depending on the chosen example
Show how to convert the calculations into a full HFSS model step by step:
variable setup
substrate and conductor creation
geometry drawing
material assignment
port definition
boundaries
solution setup
sweep setup
validation
simulation
result extraction
Explain why each HFSS setting is chosen, not only what to click, so I can later defend the design process in my report and presentation.
Show how to read the main plots properly, especially:
S11
S
11


insertion loss / transmission coefficients
isolation
coupling
phase difference, if relevant
resonance behavior, if relevant
If possible, also show a brief example of how the HFSS result can be used later in Twin Builder for system-level validation, since my project requires HFSS-to-Twin Builder integration.

Written material I need with the video:

Please also provide a short written technical note or mini-report that includes:

the chosen design example and design goal
assumptions and substrate/material parameters
main formulas used
hand-calculation summary
parameter table with dimensions
key HFSS setup choices
what was tuned and why
how to interpret the final plots
a short conclusion on whether the design met the target

Important project requirement:
My course project requires that each component starts from hand-calculated initial values, then is built physically in HFSS, then optimized in AEDT/HFSS, and later integrated at the system level in Twin Builder. It also requires a technical report, HFSS project files, Twin Builder integration, and a presentation. So I need the explanation to be at a student project / report / viva level, not just a fast tutorial.