Qualcomm incorporated (20240129090). UPLINK CHANNEL QUALITY MEASUREMENT USING A SUBFRAME WITH HIGH-INTENSITY REFERENCE SIGNAL BURSTS simplified abstract

From WikiPatents
Revision as of 02:15, 26 April 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

UPLINK CHANNEL QUALITY MEASUREMENT USING A SUBFRAME WITH HIGH-INTENSITY REFERENCE SIGNAL BURSTS

Organization Name

qualcomm incorporated

Inventor(s)

Alexandros Manolakos of Escondido CA (US)

Jing Jiang of San Diego CA (US)

June Namgoong of San Diego CA (US)

Tao Luo of San Diego CA (US)

Joseph Binamira Soriaga of San Diego CA (US)

Tingfang Ji of San Diego CA (US)

UPLINK CHANNEL QUALITY MEASUREMENT USING A SUBFRAME WITH HIGH-INTENSITY REFERENCE SIGNAL BURSTS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240129090 titled 'UPLINK CHANNEL QUALITY MEASUREMENT USING A SUBFRAME WITH HIGH-INTENSITY REFERENCE SIGNAL BURSTS

Simplified Explanation

The present disclosure describes a wireless device that communicates with another wireless device using self-contained subframes, including an uplink portion and a downlink portion. The device receives control information in the downlink portion of the first subframe and transmits data, including reference signal bursts, in the uplink portion of the first subframe.

  • Wireless device communication with self-contained subframes:
 - Utilizes self-contained subframes for communication
 - Includes uplink and downlink portions in each subframe
  • Transmission of reference signal bursts:
 - Transmits reference signal bursts in the uplink portion of the first subframe
 - Reference signal bursts are uniformly spaced in at least a portion of the uplink portion

Potential Applications

The technology described in the patent application could be applied in: - Wireless communication systems - Internet of Things (IoT) devices - Mobile networks

Problems Solved

This technology helps in: - Efficient communication between wireless devices - Optimizing use of subframes for data transmission - Enhancing overall network performance

Benefits

The benefits of this technology include: - Improved data transmission reliability - Enhanced network efficiency - Better utilization of resources

Potential Commercial Applications

Potential commercial applications of this technology could include: - Telecommunications companies - IoT device manufacturers - Network equipment providers

Possible Prior Art

One possible prior art for this technology could be the use of subframes in wireless communication systems for efficient data transmission.

Unanswered Questions

How does this technology impact battery life of wireless devices?

The patent application does not provide information on the impact of this technology on the battery life of wireless devices. Further research or testing may be needed to determine the effect on battery consumption.

What are the potential security implications of utilizing self-contained subframes in wireless communication?

The patent application does not address the potential security implications of using self-contained subframes in wireless communication. It would be important to investigate any vulnerabilities or risks associated with this technology to ensure data security and privacy.


Original Abstract Submitted

aspects of the present disclosure provide a wireless device that communicates with another wireless device utilizing self-contained subframes. the wireless device communicates with a scheduling entity utilizing a plurality of self-contained subframes that include a first subframe and a second subframe. each of the self-contained subframes includes an uplink (ul) portion and a downlink (dl) portion. the wireless device further receives dl control information from the scheduling entity in the dl portion of the first subframe, and transmits ul data that includes a plurality of reference signal bursts to the scheduling entity in the ul portion of the first subframe. the plurality of reference signal bursts are uniformly spaced in at least a portion of the ul portion of the first subframe.