Beam measurement for a cell subset
US-2021345201-A1 · Nov 4, 2021 · US
US12543085B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12543085-B2 |
| Application number | US-202118044427-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 6, 2021 |
| Priority date | Sep 10, 2020 |
| Publication date | Feb 3, 2026 |
| Grant date | Feb 3, 2026 |
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The present disclosure relates to cell measurement methods and devices. In one example method, a user equipment determines at least one first neighboring cell belonging to a first priority and/or at least one second neighboring cell belonging to a second priority among at least one neighboring cell adjacent to a serving cell of the user equipment, where the first priority is lower than the second priority. When the at least one neighboring cell includes the at least one first neighboring cell, the user equipment determines that a cell measurement policy includes measuring the at least one first neighboring cell in a plurality of discontinuous reception (DRX) cycles, where a time interval between two adjacent measurements on the first neighboring cell is greater than or equal to one DRX cycle. The user equipment measures the at least one neighboring cell according to the cell measurement policy.
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What is claimed is: 1 . A cell measurement method for user equipment, comprising: determining a first neighboring cell belonging to a first priority among neighboring cells of the user equipment and a second neighboring cell belonging to a second priority among the neighboring cells of the user equipment, wherein the first priority is lower than the second priority; measuring the first neighboring cell by using a first measurement policy, wherein a time interval between two adjacent measurements on the first neighboring cell is greater than one discontinuous reception (DRX) cycle; and measuring the second neighboring cell by using a second measurement policy, wherein the measuring the second neighboring cell by using a second measurement policy comprises measuring no more than a predetermined quantity of second neighboring cells. 2 . The method according to claim 1 , wherein before the determining a first neighboring cell belonging to a first priority among neighboring cells of the user equipment and a second neighboring cell belonging to a second priority among the neighboring cells of the user equipment, the method further comprises: obtaining information of a cell set related to the user equipment, wherein the cell set comprises a serving cell and a plurality of neighboring cells of the user equipment; and selecting at least two neighboring cells from the plurality of neighboring cells based on the information of the cell set; and wherein the determining a first neighboring cell belonging to a first priority among neighboring cells of the user equipment and a second neighboring cell belonging to a second priority among the neighboring cells of the user equipment comprises: determining the first neighboring cell and the second neighboring cell from the at least two neighboring cells. 3 . The method according to claim 1 , wherein the measuring the first neighboring cell by using a first measurement policy comprises measuring, within each measurement period, a preset quantity of neighboring cells selected from first neighboring cells for a preset quantity of times. 4 . The method according to claim 1 , wherein the first measurement policy comprises: when a quantity of first neighboring cells is greater than or equal to 2, the time interval is equal to N-1 DRX cycles, wherein N is the quantity of the first neighboring cells; or the time interval between the two adjacent measurements on the first neighboring cell is the same as or different from a time interval between other two adjacent measurements on the first neighboring cell. 5 . The method according to claim 1 , wherein the time interval is related to signal strength, greater signal strength indicates longer time interval between the two adjacent measurements on the first neighboring cell, and smaller signal strength indicates shorter time interval between the two adjacent measurements on the first neighboring cell. 6 . The method according to claim 5 , wherein that the time interval is related to signal strength comprises: when the signal strength is between a measurement start threshold and a middle threshold, determining that the time interval between the two adjacent measurements on the first neighboring cell is a first time interval, wherein the middle threshold is equal to an average value of the measurement start threshold and an escape threshold; and when the signal strength is between the middle threshold and the escape threshold, determining that the time interval between the two adjacent measurements on the first neighboring cell is a second time interval, wherein the first time interval is greater than the second time interval, wherein: the measurement start threshold is set to start a cell measurement when the signal strength is less than the measurement start threshold, and the escape threshold is set to perform the cell measurement in a default manner when the signal strength is less than the escape threshold. 7 . The method according to claim 5 , wherein the method further comprises: skipping a cell measurement when the signal strength is greater than a measurement start threshold; and measuring the first neighboring cell according to a third measurement interval when the signal strength is less than an escape threshold, wherein the third measurement interval is less than the time interval in the first measurement policy. 8 . The method according to claim 2 , wherein the method further comprises: sorting cells in descending order of stability based on at least one of a length of camp-on duration of the user equipment in each cell, signal strength of each cell, or a quantity of connection handovers between the user equipment and each cell, wherein the cells comprise at least one of the serving cell or the plurality of neighboring cells, longer camp-on duration indicates higher stability of the cell, stronger signal strength indicates higher stability of the cell, and smaller quantity of the connection handovers indicates higher stability of the cell; and wherein the selecting at least two neighboring cells from the plurality of neighboring cells comprises selecting, from the plurality of neighboring cells, a preset quantity of top-ranking neighboring cells in descending order of stability. 9 . The method according to claim 1 , wherein the measuring no more than a predetermined quantity of second neighboring cells comprises: comparing a quantity of the second neighboring cells with a first quantity; when the quantity of the second neighboring cells is greater than the first quantity, determining the first quantity of second neighboring cells from the second neighboring cell for a measurement, wherein the predetermined quantity is equal to the first quantity; and when the quantity of the second neighboring cells is less than or equal to the first quantity, performing a measurement on all the second neighboring cells, wherein the predetermined quantity is the quantity of the second neighboring cells. 10 . The method according to claim 1 , further comprising: determining that a location of the user equipment changes, a serving cell of the user equipment changes, or signal strength of a signal received through the serving cell is less than a threshold; and if a cell measurement policy is not obtained within a predetermined time period, measuring the first neighboring cell within a plurality of DRX cycles, and determining, based on a quantity of neighboring cells, a measurement interval for measuring the first neighboring cell. 11 . The method according to claim 1 , wherein: the measuring the first neighboring cell by using a first measurement policy further comprises measuring, in a power saving mode, the first neighboring cell by using the first measurement policy; and the measuring the second neighboring cell by using a second measurement policy further comprises measuring, in the power saving mode, the second neighboring cell by using the second measurement policy. 12 . A user equipment, comprising: a memory comprising instructions; and one or more processors in communication with the memory, wherein the one or more processors execute the instructions to enable the user equipment to perform: determining a first neighboring cell belonging to a first priority among neighboring cells of the user equipment and a second neighboring cell belonging to a second priority among the neighboring cells of the user equipment, wherein the first priority is lower than the second priority; measuring the first neighboring cell by using a first measurement policy, wherein a time interval between two adjacent measurements on the first neighboring cell is greater than one discont
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