vivaldiOffsetCavity
Description
The default vivaldiOffsetCavity object creates a Vivaldi antenna with a
      rectangular or circular offset cavity on an exponential or linear taper ground plane
      resonating around 16 GHz. The Vivaldi offset cavity antenna has a metal structure which helps
      the antenna avoid the shortcomings of an antipodal Vivaldi antenna like large microstrip loss,
      complex installation, and integration. The wideband characteristics of a Vivaldi offset cavity
      antenna make it suitable for ultra-wideband phased array applications used in aviation and
      aerospace technologies.

Creation
Description
            vi = vivaldiOffsetCavity
            vi = vivaldiOffsetCavity(PropertyName=Value)PropertyName is the property
            name and Value is the corresponding value. You can specify several
            name-value arguments in any order as
              PropertyName1=Value1,...,PropertyNameN=ValueN. Properties that you
            do not specify, retain their default values.
For example, ant = vivaldiOffsetCavity(CavityShape="Circular")
            creates a Vivaldi antenna with a circular offset cavity.
Properties
Object Functions
| axialRatio | Calculate and plot axial ratio of antenna or array | 
| bandwidth | Calculate and plot absolute bandwidth of antenna or array | 
| beamwidth | Beamwidth of antenna | 
| charge | Charge distribution on antenna or array surface | 
| current | Current distribution on antenna or array surface | 
| design | Create antenna, array, or AI-based antenna resonating at specified frequency | 
| efficiency | Calculate and plot radiation efficiency of antenna or array | 
| EHfields | Electric and magnetic fields of antennas or embedded electric and magnetic fields of antenna element in arrays | 
| feedCurrent | Calculate current at feed for antenna or array | 
| impedance | Calculate and plot input impedance of antenna or scan impedance of array | 
| info | Display information about antenna, array, or platform | 
| memoryEstimate | Estimate memory required to solve antenna or array mesh | 
| mesh | Generate and view mesh for antennas, arrays, and custom shapes | 
| meshconfig | Change meshing mode of antenna, array, custom antenna, custom array, or custom geometry | 
| msiwrite | Write antenna or array analysis data to MSI planet file | 
| optimize | Optimize antenna and array catalog elements using SADEA or TR-SADEA algorithm | 
| pattern | Plot radiation pattern of antenna, array, or embedded element of array | 
| patternAzimuth | Azimuth plane radiation pattern of antenna or array | 
| patternElevation | Elevation plane radiation pattern of antenna or array | 
| peakRadiation | Calculate and mark maximum radiation points of antenna or array on radiation pattern | 
| rcs | Calculate and plot monostatic and bistatic radar cross section (RCS) of platform, antenna, or array | 
| resonantFrequency | Calculate and plot resonant frequency of antenna | 
| returnLoss | Calculate and plot return loss of antenna or scan return loss of array | 
| show | Display antenna, array structures, shapes, or platform | 
| sparameters | Calculate S-parameters for antenna or array | 
| stlwrite | Write mesh information to STL file | 
| vswr | Calculate and plot voltage standing wave ratio (VSWR) of antenna or array element | 
Examples
References
[1] X. Ma, S. Chai, K. Xiao and L. Ding. "Design of All-Metal Vivaldi Phased Array Antenna," IEEE 3rd International Conference on Signal and Image Processing (ICSIP), 2018, pp. 547-551, doi: 10.1109/SIPROCESS.2018.8600487.
[2] C. L. Prasanna, M. Bhagya Lakshmi, and N. N. Sastry. "A Parametric Analysis & Design of All Metal Vivaldi Antenna Covering 3.0-18 GHz for DF and Phased Array Applications," Progress In Electromagnetics Research C, vol. 92 (April 2019): pp. 57-69. doi:10.2528/PIERC19020601
Version History
Introduced in R2021a





