I will design metamaterial metasurface and ris antennas in cst hfss
Telecommunication Engineer RF Microwave Antenna Design Specialist
About this Gig
Need a metamaterial, metasurface, or RIS antenna designed and simulated correctly the first time? You're in the right place.
I design and simulate advanced antenna structures in CST Studio Suite and Ansys HFSS, with the correct physics most generalists get wrong periodic boundary conditions, unit cell setup, and proper S-parameter and effective ε/µ extraction.
What you get:
- Metamaterial / metasurface / FSS unit cell design
- RIS, reflectarray & absorber structures
- Full simulation: S11, gain, bandwidth, absorption, radiation pattern
- Parametric study & optimization
- Comparison table vs published work (Premium)
- Native .cst / .hfss files & a clear report
Perfect for researchers, PhD & MSc students, and R&D teams working on 5G/6G, satellite, and next-generation wireless.
Why me: I focus purely on RF electromagnetic design, so your results are accurate, reproducible, and report-ready not a rushed template. For research and professional use.
Message me before ordering so I can confirm scope and give you an honest timeline. Let's design something that actually works.
Other Electronics Engineering Services I Offer
FAQ
What software do you use?
I work in CST Studio Suite and Ansys HFSS, the two industry-standard EM simulators. You'll receive the native project file plus all result plots and a report.
What types of structures can you design?
Metamaterial and metasurface unit cells, FSS, EBG, absorbers, reflectarrays, RIS elements, and metasurface-loaded antennas. If you're unsure whether your project fits, message me first.
What will I receive in the delivery?
Your simulation model, S-parameters (S11), gain, bandwidth, radiation pattern, and any absorption results, plus a clear report explaining the design. Source files are included from the Standard package up.
Can you match or benchmark against a published design?
Yes. On the Premium package I include a parametric study and a comparison table benchmarking your design against published results, for research and learning purposes.
What do you need from me to start?
Your target frequency band, substrate/material, performance goals (gain, bandwidth, etc.), and any reference paper or sketch. The more detail you share, the more accurate the result.

