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Method for processing measurement interval, terminal and network node

A technology for measuring intervals and network nodes, applied in transmission path sub-channel allocation, digital transmission systems, electrical components, etc., can solve the problem that the terminal cannot determine which measurement interval to use for measurement, and achieve the effect of accurate measurement interval

Active Publication Date: 2022-06-17
VIVO MOBILE COMM CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Embodiments of the present invention provide a measurement interval processing method, a terminal, and a network node to solve the problem in the prior art that the terminal cannot determine which measurement interval to use for measurement when multiple network nodes configure different measurement intervals for the terminal

Method used

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  • Method for processing measurement interval, terminal and network node
  • Method for processing measurement interval, terminal and network node
  • Method for processing measurement interval, terminal and network node

Examples

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Effect test

example 1

[0124] When or after the first network node configures the measurement interval based on the terminal granularity, and the second network node configures the measurement interval for the second frequency band range FR2, the method for determining the measurement interval used by the terminal includes any of the following:

[0125] Method 1: The terminal ignores the measurement interval for the second frequency band range FR2 configured by the second network node.

[0126] Method 2: The terminal applies the measurement interval configured for FR2 on FR2. Further, the terminal may ignore the terminal granularity-based measurement interval configured by the first network node.

[0127] Method 3: The terminal applies the measurement interval configured for FR2 on FR2, and uses the measurement interval based on terminal granularity on the first frequency band range FR1.

[0128] Method 4: The terminal uses the terminal granularity-based measurement interval configured by the first...

example 2

[0133] When the second network node configures the measurement interval for the second frequency band range FR2 or after, and the first network node configures the measurement interval based on the terminal granularity, the method for determining the measurement interval used by the terminal includes any of the following:

[0134] Method 5: The terminal ignores the measurement interval for the second frequency band range FR2 configured by the second network node.

[0135] Method 6: The terminal applies the measurement interval configured for FR2 on FR2. Further, the terminal may ignore the terminal granularity-based measurement interval configured by the first network node.

[0136] Method 7: The terminal applies the measurement interval configured for FR2 on FR2, and uses the measurement interval based on terminal granularity on the first frequency band range FR1.

[0137] Method 4: The terminal uses the terminal granularity-based measurement interval configured by the first...

example 3

[0183]When or after the second network node configures the measurement interval of FR2 and the first network node configures the measurement interval of FR1, or when or after the first network node configures the measurement interval of FR1 and the second network node configures the measurement interval of FR2 , the method for determining the measurement interval used by the terminal includes any of the following:

[0184] Method 9: The terminal ignores the measurement interval of FR2 configured by the second network node or the terminal ignores the measurement interval of FR1 configured by the first network node;

[0185] Method ten: the terminal uses the measurement interval of FR2 configured by the second network node and / or the measurement interval of FR1 configured by the first network node by the terminal;

[0186] Method 11: The terminal applies the configured measurement interval of FR2 to FR2, and applies the configured measurement interval of FR1 to FR1.

[0187] Fu...

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Abstract

The present invention provides a measurement interval processing method, a terminal, and a network node. The method includes: obtaining a measurement interval configured by a first network node for a terminal and a measurement interval configured by a second network node for a terminal, wherein the first network node and The second network node configures different measurement intervals for the terminal; and determines the measurement interval used by the terminal according to the measurement interval configured for the terminal by the first network node and the measurement interval configured for the terminal by the second network node. In the case that the first network node and the second network node configure different measurement intervals for the terminal, the above embodiments of the present invention define which measurement interval the terminal selects to take effect, and the terminal determines the measurement interval used by the terminal, so as to obtain a more accurate Measurement interval, improve measurement efficiency.

Description

technical field [0001] The present invention relates to the technical field of communications, and in particular, to a method for processing a measurement interval, a terminal and a network node. Background technique [0002] After the introduction of the 5G system, the Dual Connectivity (DC) architecture is used in some scenarios to improve transmission reliability. In the first stage of deployment, a dual-connection architecture will be used with LTE (Long Term Evolution, Long Term Evolution) to meet interworking requirements. In the DC architecture of LTE, measurement gaps (measurement gaps) are all configured per-UE, that is, each terminal UE is configured with one measurement gap, and all are configured by MeNB (main base station, may be referred to as MN for short). [0003] In 5G NR (new air interface), or in LTE's EN-DC (LTE-NR Dual Connection, LTE-NR dual connection) architecture, SeNB or SgNB (secondary base station, may be referred to as SN) may have more capabil...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04W72/04H04L5/00
CPCH04L5/0048H04W72/23H04L5/00H04W36/0088H04W24/10H04W72/04
Inventor 陈力
Owner VIVO MOBILE COMM CO LTD
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