Silvus Technologies, Inc. — Department of Defense SBIR Phase I: ABSTRACT: Silvus Technologies proposes to develop low SWaP electronically steerable direc

Silvus Technologies, Inc. — SBIR Phase I award from Department of Defense.

Amount
$149,936
Agency
Department of Defense · Air Force
Program / Phase
SBIR · Phase I
Solicitation
2012.1
NAICS
Place of performance
CA
Period
2012-05-07

Description

ABSTRACT: Silvus Technologies proposes to develop low SWaP electronically steerable directional terminals through a combination of smart antenna processing and the use of recent fundamental innovations in difference co-array signal processing. Depending on antenna element placement, difference co-array processing has the potential to provably create O(N^2) spatial degrees of freedom using only O(N)antenna elements. This is a huge step forward from any state of the art system. The antenna arrays elements have non-uniform (aperiodic) spacing between them to achieve the above theoretical degrees of freedom (DoFs). However unlike traditional aperiodic antenna array design which depends purely on computational approaches, the proposed aperiodic array approaches have a closed form solution, enabling designers to cross validate experimental outcomes with theoretical predictions. In the phase I effort Silvus will evaluate the proposed approach in terms of beam pattern characteristics (main lobe gain, highest side-lobe level, beamwidth, ability to null jammers), wideband operations, SWAP-C, co-site interference mitigation capability. In Phase II Silvus will test a prototype system in an operationally relevant environment. BENEFIT: There are numerous applications of the ground breaking technology development enabling O(N^2 ) spatial degrees of freedom with just O(N) antenna elements in the fields of wireless communications (both commercial and military), RADAR, electronic warfare, RF geo-localization, Anti-jam equipment etc. Additional DoFs can be used to enhance spectral efficiency of tactical ad hoc networks by signaling in the spatial dimension, to compute direction of arrival of a large number of RF sources, to spatially null interference from jammers, to track a large number of targets using low SWaP RADARs etc. Today"s advanced computing platforms can easily fit the required signal processing to realize such gains in DoF. Example Air Force applications: The E-3 AWACS rotodome contains a large phased array radar. The proposed technology will enable creation of small form factor phased array radars. The rotodome causes unwanted drag, a reduced size rotodome will increase the mission life of E-3 AWACS on a single fuel tank. Commercial Applications: Multi-user downlink in cellular systems uses smart antenna beamforming. The innovations described in this proposal can provide considerably higher throughput with the same antenna arrays. Silvus"expertise in MIMO and smart antenna processing is of particular value here as 5G cellular systems have adopted MIMO and cost effective and smart MIMO antennas are viewed as a future need.