IP Library Granted Patent US 10,588,137
Granted Patent B2
US 10,588,137 · App. 15/656,493 · Granted Mar 10, 2020

Measurement apparatus and Method

Inventors: Jian Zhang (Shanghai, CN); Yuanjie Li (Shanghai, CN); Yongxing Zhou (Beijing, CN); Qinghai Zeng (Shanghai, CN)
Assignee: Huawei Technologies Co., Ltd.
H04W72/085H04L5/0032H04L5/0048H04W24/10H04W36/0088H04B7/0617H04W84/12
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Quick Facts
Patent No.
US 10,588,137
App. No.
15/656,493
Granted
Mar 10, 2020
Kind
B2
Abstract

A measurement apparatus and method. The method includes sending, by a radio access network system, information about a subframe mode corresponding to at least one beam, where the information about the subframe mode instructs a UE to perform measurement according to the information about the subframe mode, and the method further includes receiving, by the radio access network system, a measurement result sent by the UE. The measurement apparatus and method can be used to perform the measurement in a millimeter wave scenario.

Claims (39)

1. A measurement method, comprising:

sending, by a radio access network system to a user equipment (UE), information about a UE-specific subframe mode corresponding to at least one beam of a plurality of beams, wherein a beam of the plurality of beams has a subframe mode applicable to a UE on the Particular beam that is different from the subframe mode of another UE within the same beam, wherein the information about the subframe mode instructs the UE to perform measurement according to the information about the subframe mode, and further according to a beam mode of a first beam of the plurality of beams on which the UE resides, wherein the information about the beam mode comprises at least one of a quantity of beams of the plurality of beams, a beam switching sequence, or a beam switching time; and

receiving, by the radio access network system, a measurement result sent by the UE.

2. The method according to claim 1 , wherein the information about the subframe mode comprises information about a subframe mode of a frequency of a serving cell, information about a subframe mode of an intra-frequency neighboring cell, or information about a subframe mode of an inter-frequency neighboring cell;

wherein the information about the subframe mode of the frequency of the serving cell is used by the UE to perform measurement for the serving cell on the beam;

wherein the information about the subframe mode of the intra-frequency neighboring cell is used by the UE to perform measurement for the intra-frequency neighboring cell on the beam; and

wherein the information about the subframe mode of the inter-frequency neighboring cell is used by the UE to perform measurement for the inter-frequency neighboring cell on the beam.

3. The method according to claim 1 , wherein the sending, by a radio access network system, information about the subframe mode further comprises:

receiving, by the radio access network system, information about a beam mode and the information about the subframe mode of a neighboring base station; and

sending, by the radio access network system, information about a beam mode and the information about the subframe mode of the radio access network system to the neighboring base station.

4. The method according to claim 3 , wherein the radio access network system further sends a measurement configuration message to the UE, wherein the measurement configuration message comprises measurement gap configuration information on at least one beam, and wherein the measurement gap configuration information instructs the UE to perform measurement for an inter-frequency neighboring cell on a corresponding beam.

5. A radio access network system, wherein the radio access network system comprises at least one base station, and the base station comprises:

a transmitter, wherein the transmitter is configured to send information about a UE-specific subframe mode corresponding to at least one beam of a plurality of beams, wherein a beam of the plurality of beams has a subframe mode applicable to a UE on the particular beam that is different from the subframe mode of another UE within the same beam, wherein the information about the subframe mode instructs UE to perform measurement according to the information about the subframe mode, and further according to a beam mode of a first beam of the plurality of beams on which the UE resides, wherein the information about the beam mode comprises at least one of a quantity of beams of the plurality of beams, a beam switching sequence, or a beam switching time;

a receiver, wherein the receiver is configured to receive a measurement result sent by the UE;

a processor; and

a non-transitory computer-readable storage medium storing a program to be executed by the processor, the program including instructions to:

generate a measurement configuration message.

6. The system according to claim 5 , wherein the information about the subframe mode comprises information about a subframe mode of a frequency of a serving cell, information about a subframe mode of an intra-frequency neighboring cell, or information about a subframe mode of an inter-frequency neighboring cell;

wherein the information about the subframe mode of the frequency of the serving cell is used by the UE to perform measurement for the serving cell on the beam;

wherein the information about the subframe mode of the intra-frequency neighboring cell is used by the UE to perform measurement for the intra-frequency neighboring cell on the beam; and

wherein the information about the subframe mode of the inter-frequency neighboring cell is used by the UE to perform measurement for the inter-frequency neighboring cell on the beam.

7. The system according to claim 5 , wherein the receiver is further configured to receive information about a beam mode and the information about the subframe mode of a neighboring base station; and

wherein the transmitter is further configured to send information about a beam mode and the information about the subframe mode of the radio access network system to the neighboring base station.

8. The system according to claim 7 , wherein the transmitter is further configured to send a measurement configuration message, wherein the measurement configuration message comprises measurement gap configuration information on at least one beam, and wherein the measurement gap configuration information is used to instruct the UE to perform measurement for an inter-frequency neighboring cell on a corresponding beam.

9. A user equipment (UE), wherein the UE comprises:

a receiver, wherein the receiver is configured to receive, from a radio access network system, information about a UE-specific subframe mode corresponding to at least one beam of a plurality of beams, wherein a beam of the plurality of beams has a subframe mode applicable to a UE on the particular beam that is different from the subframe mode of another UE within the same beam, wherein the information about the subframe mode instructs the UE to perform measurement according to the information about the subframe mode, and further according to a beam mode of a first beam of the plurality of beams on which the UE resides, wherein the information about the beam mode comprises at least one of a quantity of beams of the plurality of beams, a beam switching sequence, or a beam switching time;

a processor;

a non-transitory computer-readable storage medium storing a program to be executed by the processor, the program including instructions to:

perform measurement according to the information about the subframe mode of the first beam and generate a measurement result;

a transmitter, wherein the transmitter is configured to send the measurement result to the radio access network system.

10. The UE according to claim 9 , wherein the information about the subframe mode comprises information about a subframe mode of a frequency of a serving cell, information about a subframe mode of an intra-frequency neighboring cell, or information about a subframe mode of an inter-frequency neighboring cell;

wherein the information about the subframe mode of the frequency of the serving cell is used by the UE to perform measurement for the serving cell on the beam;

wherein the information about the subframe mode of the intra-frequency neighboring cell is used by the UE to perform measurement for the intra-frequency neighboring cell on the beam; and

wherein the information about the subframe mode of the inter-frequency neighboring cell is used by the UE to perform measurement for the inter-frequency neighboring cell on the beam.

11. The UE according to claim 9 , wherein the receiver is further configured to receive a reference signal sent by the radio access network system; and

wherein the beam on which the UE resides is sent by the radio access network system.

12. The UE according to claim 9 , wherein the receiver is further configured to receive a reference signal sent by a neighboring base station; and

wherein the neighboring base station neighbors the radio access network system.

13. The UE according to claim 12 , wherein the receiver is further configured to receive a measurement configuration message, wherein the measurement configuration message comprises measurement gap configuration information on at least one beam, and wherein the measurement gap configuration information instructs the UE to perform measurement for an inter-frequency neighboring cell on a corresponding beam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2017
From: ZHANG, JIAN; LI, YUANJIE; ZHOU, YONGXING; ZENG, QINGHAI
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 044344/0021 →
Continuity (2)
Continuation PCTCN2015071350 · Jan 22, 2015
Related Publication 20170325244A1 · Nov 9, 2017