18264211. TECHNIQUES FOR SIDELINK RESOURCE RESERVATION simplified abstract (QUALCOMM Incorporated)

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TECHNIQUES FOR SIDELINK RESOURCE RESERVATION

Organization Name

QUALCOMM Incorporated

Inventor(s)

Shuanshuan Wu of San Diego CA (US)

Stelios Stefanatos of San Diego CA (US)

Arthur Gubeskys of San Diego CA (US)

Huilin Xu of Temecula CA (US)

TECHNIQUES FOR SIDELINK RESOURCE RESERVATION - A simplified explanation of the abstract

This abstract first appeared for US patent application 18264211 titled 'TECHNIQUES FOR SIDELINK RESOURCE RESERVATION

Simplified Explanation

The patent application describes methods, systems, and devices for wireless communications that enable a user equipment (UE) to reserve sidelink resources in an unlicensed frequency spectrum band by transmitting control signaling in a licensed carrier.

Key Features and Innovation

  • User equipment (UE) can reserve sidelink resources in an unlicensed frequency spectrum band.
  • Sidelink control signaling is transmitted in a licensed carrier to reserve resources in the unlicensed carrier.
  • Channel access procedure is performed before transmitting sidelink data.
  • Sidelink data is transmitted based on the channel access procedure.

Potential Applications

This technology can be applied in various wireless communication systems where efficient resource reservation is required, such as in IoT devices, smart cities, and industrial automation.

Problems Solved

This technology addresses the challenge of reserving sidelink resources in unlicensed frequency spectrum bands while ensuring efficient communication and resource allocation.

Benefits

  • Improved resource utilization in wireless communication systems.
  • Enhanced reliability and efficiency in transmitting sidelink data.
  • Facilitates seamless communication in diverse environments.

Commercial Applications

  • IoT devices and sensors that require reliable and efficient communication.
  • Smart city infrastructure for seamless data transmission.
  • Industrial automation systems for optimized resource allocation.

Prior Art

Readers can explore prior research on cross-carrier sidelink resource reservation in wireless communications to understand the evolution of this technology.

Frequently Updated Research

Stay updated on advancements in wireless communication systems, spectrum management, and resource allocation techniques to enhance the efficiency of cross-carrier sidelink resource reservation.

Questions about Wireless Communications

How does cross-carrier sidelink resource reservation improve wireless communication efficiency?

Cross-carrier sidelink resource reservation allows for better resource utilization and optimized data transmission, leading to improved efficiency in wireless communication systems.

What are the potential challenges in implementing cross-carrier sidelink resource reservation in real-world applications?

Implementing cross-carrier sidelink resource reservation may face challenges related to spectrum management, interference mitigation, and coordination among different carriers and frequency bands.


Original Abstract Submitted

Methods, systems, and devices for wireless communications are described. To support cross-carrier sidelink resource reservation, a user equipment (UE) may transmit sidelink control signaling in a carrier in a licensed frequency spectrum band (e.g., a licensed carrier) that reserves one or more sidelink resources of a carrier in an unlicensed frequency spectrum band (e.g., an unlicensed carrier) for transmission of sidelink data. For example, the UE may determine the one or more sidelink resources for transmission of the sidelink data in the unlicensed carrier and may transmit the sidelink control signaling in the licensed carrier to reserve the one or more sidelink resources. The UE may then transmit the sidelink data in the one or more sidelink resources of the unlicensed carrier. In some examples, the UE may perform a channel access procedure before transmitting the sidelink data and may transmit the sidelink data based on the channel access procedure.