Abstract: A high-gain, wide-angle, multi-beam, multi-frequency beamforming lens antenna that includes a Luneburg lens with at least one planar interface in the southern hemisphere of the Luneburg lens and a planar ultrawideband modular antenna (PUMA array) structure. The PUMA array structure is connected to at least one of the planar interfaces of the Luneburg lens and is configured to function as a feed network to illuminate cells of the Luneburg lens simultaneously.
Type:
Grant
Filed:
November 24, 2020
Date of Patent:
May 26, 2026
Assignee:
APOTHYM TECHNOLOGIES GROUP, LLC
Inventors:
Soumitra Biswas, Howard Jetmundsen, Shawn Rogers, Harold Thomas Cox
Abstract: A reconfigurable infrastructure system comprising a networked cloud of edge computing infrastructure, cloud computing infrastructure, at least one virtual appliance, at least one edge device, and at least one medium controller.
Type:
Grant
Filed:
February 11, 2022
Date of Patent:
April 21, 2026
Assignee:
APOTHYM TECHNOLOGIES GROUP, LLC
Inventors:
Juan Deaton, Justin Cook, Michael Geist, Michael Beeler, Cris Mamaril
Abstract: An all-digital software-only radar using distributed processing resources of cloud computing is provided. In particular, all processes that were previously supported by purpose built software, firmware, Field Programmable Gate Array (FPGA) hardware description language (HDL) firmware, and an Application Specific Integrated Circuit (ASIC) are in the instant disclosure supported entirely by a High Performance Computing (HPC) server inside a cloud computing environment.
Abstract: A multiple flat sided modified Luneburg Lens antenna to provide a broadband and hemi-spherical coverage. The Modified Luneburg Lens antenna has a flat surface at the bottom and quadrilateral/hexagonal/octagonal/decagon/dodecagon flat surfaces at the sides (e.g., “cupcake shaped”) to manipulate the signal directivity of a radio frequency transmission or reception of interest in a plurality of octaves of bandwidth. The antenna may be configured with a Planar Ultra-Wideband Modular Array (PUMA) Antenna array structure with a broadband anti-reflective layer added between the two devices. The anti-reflective layer marries the two devices (lens and PUMA) and creates a broadband impedance matching between the new modified Luneburg lens antenna and dipoles of the PUMA array while maintaining the capability of the system to transmit and receive signals in a plurality of octaves of bandwidth.
Type:
Grant
Filed:
May 19, 2021
Date of Patent:
May 13, 2025
Assignee:
APOTHYM TECHNOLOGIES GROUP, LLC
Inventors:
Soumitra Biswas, Howard Jetmundsen, Shawn Rogers
Abstract: A method to provide flexibility on the configuration and operation of the modulator, demodulator, and modem, where purpose-built (legacy) devices are not traditionally capable of exposing a level of control and flexibly for a user or an autonomous program for optimizing performance. Providing user or programmatic control of algorithms is traditionally not possible for purpose-built modems. Parameters such as the number of decoder iterations that are performed on Forward Error Correction (FEC), Interference Mitigation algorithm, or dynamic adjustment loop bandwidth to combat phase noise can be adjusted autonomously to optimize receiver performance. The all software modem, supported by a High-Performance Computing (HPC) architecture, removes the limitation due to the flexibility of programming resources and available performance.
Type:
Grant
Filed:
November 3, 2020
Date of Patent:
November 28, 2023
Assignee:
APOTHYM TECHNOLOGIES GROUP, LLC
Inventors:
Michael Beeler, Michael Geist, Cris Mamaril, Jason Duchez, Jakob Harmon, Richard Davis