1.

Typical radio frequency (RF) digital beamformers can be highly complex. In addition to a suitable antenna array, they require numerous receiver chains, demodulators, d[...]

2017 | Text |
2.

Communications at mm-wave frequencies and above rely heavily on beamforming antenna arrays. Typically, hundreds, if not thousands, of independent antenna channels are [...]

2021 | Text |
3.

The development of reconfigurable antennas compatible with a CubeSat form factor can aid several space missions. Often, satellite missions require multiple wireless li[...]

2020 | Text |
4.

Analog computing, which has been superseded by digital computing industry for more than half a century is making a comeback as the Moore's Law slows down. Analog CMOS [...]

2022 | Text |
5.

Modern phased arrays require large instantaneous bandwidths, wide fields of view, and low profiles to conduct multiple functions. Many of these phased arrays rely on e[...]

2021 | Text |
6.

To overcome the limited payload dedicated to onboard antennas for CubeSat/SmallSat applications, this paper presents a novel, foldable, dual-polarized Tightly Coupled [...]

2022 | Text |
7.

With the growth of wireless data traffic, additional spectrum is required to meet consumer demands. Consequently, innovative approaches are needed for efficient manage[...]

2020 | Text |
8.

Within the context of modern digital phased array (DPA) radios, differential Radio Frequency (RF) front-ends provide much greater immunity to noise and distortion by s[...]

2021 | Text |
9.

As is well-known, the wireless spectrum is highly fragmented and congested, imply- ing challenges in its utilization. This creates inefficient and costly redundancy, a[...]

2022 | Text |