Passive electronically scanned array (PESA)
A passive electronically scanned array in a number of phases. Initially, the array system configuration is determined followed by sizing the array, designing, building, and testing a 1D lens, and designing, building, and testing a 1×N switch network. This is followed by building and testing the array with associated 1D lenses, and integrating and testing switch networks connected to each lens in array. This is followed by design, build, test, and integration of the orthogonal switch matrix that connects to all of the lens switch matrixes, and system integration.
1. A passive phased array antenna comprising:
a first plurality of M bootlace lenses parallel to each other;
a second bootlace lens orthogonal to said plurality of the first plurality of M bootlace lenses;
M array of N antenna elements each N of said M arrays feeding to a separate one of said M bootlace lenses, where M and N are positive integers;
M 1×O RF switches, each of said M switches connected to and scanning a separate one of said first plurality of said M bootlace lenses;
outputs from the M switches being fed to the second bootlace lens;
a 1×P RF switch connected to and scanning the second bootlace lens; and
an output from the 1×P switch feed a satellite communication system, where O and P are positive integers.
2. The antenna of claim 1 , wherein at least one of the bootlace lenses is a Rotman lens.
3. The antenna of claim 1 , wherein at least one of the Rotman lenses is optimized using 3D electromagnetic analyses.
4. The antenna of claim 1 , wherein at least one of the switches is a low loss absorptive switch.
5. The antenna of claim 1 , wherein at least one of the switches is a PIN diode switch.
6. The antenna of claim 1 , wherein at least one of the switches is a MEMS switch.
7. The antenna of claim 1 , wherein at least one of the switches is a ferrite based RF switch.
8. The antenna of claim 1 , wherein O=N and P=M.