Qualcomm incorporated (20240340144). REFERENCE SIGNAL SEQUENCE INDICATION IN ORBITAL ANGULAR MOMENTUM (OAM) COMMUNICATION SYSTEMS simplified abstract

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REFERENCE SIGNAL SEQUENCE INDICATION IN ORBITAL ANGULAR MOMENTUM (OAM) COMMUNICATION SYSTEMS

Organization Name

qualcomm incorporated

Inventor(s)

Min Huang of Beijing (CN)

Chao Wei of Beijing (CN)

Wei Xi of Beijing (CN)

Hao Xu of Beijing (CN)

REFERENCE SIGNAL SEQUENCE INDICATION IN ORBITAL ANGULAR MOMENTUM (OAM) COMMUNICATION SYSTEMS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240340144 titled 'REFERENCE SIGNAL SEQUENCE INDICATION IN ORBITAL ANGULAR MOMENTUM (OAM) COMMUNICATION SYSTEMS

The patent application discusses techniques for indicating reference signal sequences in orbital angular momentum (OAM) communication systems. An apparatus is described, including a processor, antenna elements, a transceiver, and memory configured to receive and identify OAM modes for reference signals.

  • The patent application focuses on improving wireless communication in OAM systems.
  • The apparatus includes a processor, antenna elements, a transceiver, and memory for processing reference signals.
  • The system receives a first reference signal on a first OAM mode and identifies a second OAM mode for a second reference signal.
  • The technology aims to enhance the efficiency and reliability of OAM communication systems.
  • By optimizing the reception of reference signals, the system can improve overall communication performance.
      1. Potential Applications:

The technology could be applied in various wireless communication systems that utilize OAM for data transmission, such as satellite communication, terrestrial point-to-point links, and underwater communication.

      1. Problems Solved:

The technology addresses the challenge of efficiently indicating reference signal sequences in OAM communication systems, which can improve signal reception and data transmission accuracy.

      1. Benefits:

- Enhanced communication performance in OAM systems - Improved signal reception and data transmission efficiency - Increased reliability in wireless communication applications

      1. Commercial Applications:

Title: "Enhanced Wireless Communication Systems Using OAM Technology" The technology could be commercially utilized in satellite communication systems, point-to-point links for high-speed data transmission, and underwater communication networks. This innovation could benefit telecommunications companies, defense organizations, and research institutions seeking to improve wireless communication capabilities.

      1. Prior Art:

Prior art related to this technology may include research papers, patents, or industry publications discussing techniques for optimizing signal reception in OAM communication systems.

      1. Frequently Updated Research:

Researchers are continually exploring advancements in OAM communication systems, including signal processing techniques, antenna design improvements, and protocol enhancements to further enhance the performance of these systems.

        1. Questions about OAM Communication Systems:

1. How does the technology improve signal reception in OAM communication systems? 2. What are the potential applications of this innovation in the telecommunications industry?


Original Abstract Submitted

techniques related to reference signal sequence indication in orbital angular momentum (oam) communication systems are disclosed. some aspects of the disclosure relate to apparatuses and methods for wireless communication, an apparatus comprising: a processor; antenna elements; a transceiver coupled to the processor and antenna elements; and a memory coupled to the processor, the processor and the memory configured to: receive a first reference signal on a first oam mode using first resources; identify, based on the first oam mode used to receive the first reference signal, a second oam mode to be used to receive a second reference signal associated with second resources; and receive the second reference signal on the second oam mode using the second resources. other aspects, embodiments, and features are also claimed and described.