Nvidia corporation (20240348283). PARALLELIZATION OF HADAMARD TRANSFORMS OF WIRELESS SIGNALS simplified abstract

From WikiPatents
Revision as of 00:33, 18 October 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

PARALLELIZATION OF HADAMARD TRANSFORMS OF WIRELESS SIGNALS

Organization Name

nvidia corporation

Inventor(s)

David Henry Schmitz of Encinitas CA (US)

James Hansen Delfeld of Austin TX (US)

PARALLELIZATION OF HADAMARD TRANSFORMS OF WIRELESS SIGNALS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240348283 titled 'PARALLELIZATION OF HADAMARD TRANSFORMS OF WIRELESS SIGNALS

The patent application pertains to decoding fifth generation (5G) open radio access network (ORAN) wireless signals using fast Walsh Hadamard transform operations in parallel.

  • Two or more operations associated with a fast Walsh Hadamard transform are utilized to decode 5G ORAN wireless signals simultaneously.
  • The innovation allows for efficient and rapid decoding of complex 5G signals.
  • By decoding signals in parallel, the process is expedited, enhancing overall network performance.
  • The technology optimizes the utilization of resources and improves the reliability of signal decoding.
  • Implementing this method can lead to enhanced communication capabilities and network efficiency.

Potential Applications: This technology can be applied in telecommunications, mobile networks, and wireless communication systems to improve signal decoding processes.

Problems Solved: The innovation addresses the challenge of efficiently decoding complex 5G ORAN wireless signals, enhancing network performance and reliability.

Benefits: The technology offers faster signal decoding, improved network efficiency, and enhanced communication capabilities.

Commercial Applications: This innovation can be utilized by telecommunications companies, network operators, and wireless communication providers to enhance their services and optimize network performance.

Questions about the technology: 1. How does the fast Walsh Hadamard transform improve the decoding of 5G ORAN wireless signals? 2. What are the potential implications of implementing this technology in telecommunications networks?


Original Abstract Submitted

apparatuses, systems, and techniques to decode fifth generation (5g) open radio access network (oran) wireless signals. in at least one embodiment, two or more operations associated with a fast walsh hadamard transform are used to decode 5g oran wireless signals in parallel.