phasedArrayCalculator
R2026bDescription
Use the phasedArrayCalculator object to design and analyze phased array
antennas quickly using classical array equations without running full‑wave electromagnetic
simulations.
The object lets you:
Size arrays to meet a target gain
Explore square and hexagonal lattices
Evaluate directivity, beamwidth, sidelobe levels, and grating lobes
Visualize array layout, efficiency trends, and grating lobe angles
Generate initial 3‑D array models for
conformalArrayorphased.ConformalArray(Phased Array System Toolbox)
Phased array antennas combine the fields from multiple radiating elements with specified amplitude (taper) and phase distributions to form high‑gain spot beams or shaped coverage beams. Amplitude taper is commonly used to control sidelobe levels, while phase distributions are used to scan or shape the beam. Early‑stage array design via closed‑form array equations is much faster than full‑wave simulation and is useful for initial sizing and trade studies.
Creation
Syntax
Description
creates a 2-by-2
horn-fed parabolic reflector antenna array with default property values.p = phasedArrayCalculator
sets properties
using one or more name-value arguments. p = phasedArrayCalculator(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, p = phasedArrayCalculator(Lattice="hexagon") creates
a phased array of horn antennas arranged in a hexagonal lattice with default values for
other properties.
Properties
Object Functions
createArray | Create conformal array from calculated array design parameters |
plot | Visualize phased array layout and plot grating lobes, and efficiency |
plotDirectivity | Plot directivity of phased array |
removeElements | Remove array elements for better sizing |
solve | Compute phased array design parameters |
Examples
References
[1] Rao, Sudhakar K., and Calen Ostroot. “Design Principles and Guidelines for Phased Array and Reflector Antennas [Antenna Applications Corner].” IEEE Antennas and Propagation Magazine 62, no. 2 (2020): 74–81. https://doi.org/10.1109/MAP.2020.2969261.
[2] Rao, Sudhakar, Lotfollah Shafai, and Satish Sharma, eds. Handbook of Reflector Antennas and Feed Systems: Volume 3: Applications of Reflectors. Artech House Antennas and Propagation Series. Artech House, 2013.
Version History
Introduced in R2026b
See Also
Objects
reflectorCalculator|phased.ConformalArray(Phased Array System Toolbox) |measuredAntenna




