18231552. LOAD BALANCING IN NEW RADIO simplified abstract (Apple Inc.)

From WikiPatents
Jump to navigation Jump to search

LOAD BALANCING IN NEW RADIO

Organization Name

Apple Inc.

Inventor(s)

Haitong Sun of Cupertino CA (US)

Dawei Zhang of Saratoga CA (US)

Hong He of San Jose CA (US)

Huaning Niu of San Jose CA (US)

Jie Cui of San Jose CA (US)

Wei Zeng of Saratoga CA (US)

Xiang Chen of Campbell CA (US)

Yang Tang of San Jose CA (US)

LOAD BALANCING IN NEW RADIO - A simplified explanation of the abstract

This abstract first appeared for US patent application 18231552 titled 'LOAD BALANCING IN NEW RADIO

Simplified Explanation

The abstract describes a method for measuring a synchronization signal block (SSB) outside of an active bandwidth part (BWP) in a wireless communication system.

  • User equipment (UE) transmits an indication of its capability to measure an SSB outside of an active BWP to a base station.
  • The UE receives configuration parameters from the base station, including identifying the active BWP, a second BWP, and the frequency carrying the SSB.
  • The UE detects the SSB in the second BWP and outside of the active BWP.
  • The UE measures the SSB.

---

      1. Potential Applications
  • Wireless communication systems
  • 5G networks
  • Mobile devices
      1. Problems Solved
  • Efficient measurement of synchronization signal blocks
  • Improving signal detection accuracy
  • Enhancing communication system performance
      1. Benefits
  • Increased efficiency in measuring SSBs
  • Improved network performance
  • Enhanced user experience in wireless communication.


Original Abstract Submitted

Techniques are directed toward measuring a synchronization signal block (SSB) outside an active bandwidth part (BWP). An example method includes a user equipment (UE) transmitting an indication of a capability to measure a synchronization signal block (SSB) outside of an active bandwidth part (BWP) to a base station. The method can further include the UE receiving, based on the transmission, a first configuration parameter for identifying a first BWP and a second BWP, a second configuration parameter for identifying the first BWP as an active BWP, and a third configuration parameter for identifying a frequency that is carrying the SSB. The method can further include the UE detecting the SSB in the second BWP and outside of the active BWP. The method can further include the UE measuring the SSB.