WO2021052480A1 - 信息配置方法、装置、相关设备及存储介质 - Google Patents

信息配置方法、装置、相关设备及存储介质 Download PDF

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Publication number
WO2021052480A1
WO2021052480A1 PCT/CN2020/116282 CN2020116282W WO2021052480A1 WO 2021052480 A1 WO2021052480 A1 WO 2021052480A1 CN 2020116282 W CN2020116282 W CN 2020116282W WO 2021052480 A1 WO2021052480 A1 WO 2021052480A1
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WIPO (PCT)
Prior art keywords
information
configuration information
terminal
configuration
measurement
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PCT/CN2020/116282
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English (en)
French (fr)
Inventor
陈宁宇
Original Assignee
中国移动通信有限公司研究院
中国移动通信集团有限公司
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Publication of WO2021052480A1 publication Critical patent/WO2021052480A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • H04W36/0058Transmission of hand-off measurement information, e.g. measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • H04W36/0061Transmission or use of information for re-establishing the radio link of neighbour cell information

Definitions

  • This application relates to the field of wireless communication, and in particular to an information configuration method, device, related equipment, and storage medium.
  • the cell reselection information and measurement configuration information can be broadcast to the terminal through the base station. These information can carry the same frequency and different frequency frequency points, as well as the information of the neighboring cells on each frequency point, including the neighboring cell physical cell identification and measurement parameters.
  • embodiments of the present application provide an information configuration method, device, related equipment, and storage medium.
  • At least one embodiment of the present application provides an information configuration method applied to a network device, including:
  • the configuration information includes at least one of the following:
  • the method when sending configuration information corresponding to the beam on each beam, the method includes:
  • the configuration information corresponding to the beam is sent on the resources associated with the SSB or on the resources associated with the CSI-RS.
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method applied to a terminal, including:
  • the configuration information includes at least one of the following:
  • the determining a beam for receiving configuration information includes:
  • the beam on which it resides is used as the beam for receiving configuration information.
  • the method when the configuration information corresponding to the determined beam is received on the determined beam, the method includes:
  • the configuration information corresponding to the determined beam is received on the resource associated with the SSB or on the resource associated with the CSI-RS.
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method, which is applied to a network device, and includes:
  • the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information;
  • the configuration information includes at least one of the following:
  • the configuration information identifier is one of the following:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method applied to a terminal, including:
  • the first information includes at least one piece of configuration information and a configuration information identifier corresponding to each configuration information
  • the configuration information includes at least one of the following:
  • the determining the beam corresponding to the configuration information configured by the network side includes:
  • the beam where it resides is regarded as the definite beam.
  • the configuration information identifier is one of the following:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method, which is applied to a network device, and includes:
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal;
  • the configuration information includes at least one of the following:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method applied to a terminal, including:
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter represents the height of the terminal;
  • the configuration information that matches the height of itself in the second information is used as the configuration information configured by the network side for itself;
  • the configuration information includes at least one of the following:
  • the method further includes:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one embodiment of the embodiments of the present application also provides an information configuration method applied to a network device, including:
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter characterizes the direction and angle of the terminal position relative to the network device;
  • the configuration information includes at least one of the following:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration method applied to a terminal, including:
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the direction angle of the terminal position relative to the network device;
  • the configuration information that matches the direction and angle of its own position relative to the network device in the third information is used as the configuration information configured by the network side for itself;
  • the configuration information includes at least one of the following:
  • the method further includes:
  • the cell reselection information includes at least one of the following information:
  • the measurement configuration information includes at least one of the following information:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the first configuration unit is configured to send configuration information corresponding to the beam on each beam;
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the first determining unit is configured to determine a beam for receiving configuration information
  • the first receiving unit is configured to receive configuration information corresponding to the determined beam on the determined beam;
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the second configuration unit is configured to send first information to the terminal; the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information; wherein,
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the second receiving unit is configured to receive first information sent by the network side; the first information includes at least one piece of configuration information and a configuration information identifier corresponding to each configuration information;
  • the second determining unit is configured to determine the beam corresponding to the configuration information configured for the terminal on the network side;
  • the first processing unit is configured to obtain a configuration information identifier corresponding to the determined beam; and use the configuration information corresponding to the obtained configuration information identifier in the first information as the configuration information configured by the network side for the terminal;
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the third configuration unit is configured to send second information to the terminal; the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal; wherein,
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the third receiving unit is configured to receive second information sent by the network side; the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter represents the height of the terminal;
  • the second processing unit is configured to use the configuration information matching the height of the terminal in the second information as the configuration information configured by the network side for the terminal;
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the fourth configuration unit is configured to send third information to the terminal; the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the direction angle of the terminal position relative to the network device ;among them,
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application also provides an information configuration device, including:
  • the fourth receiving unit is configured to receive third information sent by the network side; the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the position of the terminal relative to the network device Direction angle
  • the third processing unit is configured to use the configuration information that matches the direction and angle of the terminal position relative to the network device in the third information as the configuration information configured by the network side for the terminal; wherein,
  • the configuration information includes at least one of the following:
  • At least one of the embodiments of the present application further provides a network device, including: a first processor and a first communication interface; wherein,
  • the first processor is configured to send configuration information corresponding to the beam on each beam through the first communication interface; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information;
  • the first processor is configured to send first information to the terminal through the first communication interface; the first information includes at least one piece of configuration information and a configuration information identifier corresponding to each configuration information; wherein, the configuration information Contains at least one of the following: cell reselection information; measurement configuration information;
  • the first processor is configured to send second information to the terminal through the first communication interface; the second information includes at least one piece of configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes The height of the terminal; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information;
  • the first processor is configured to send third information to the terminal through the first communication interface; the third information includes at least one piece of configuration information and a second parameter corresponding to each configuration information; the second parameter characterizes The direction angle of the terminal position relative to the network device; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • At least one of the embodiments of the present application further provides a terminal, including: a second processor and a second communication interface; wherein,
  • the second processor is configured to determine a beam for receiving configuration information; the second communication interface is configured to receive configuration information corresponding to the determined beam on the determined beam; wherein the configuration information includes at least one of the following One: cell reselection information; measurement configuration information;
  • the second communication interface is configured to receive first information sent by the network side; the first information includes at least one piece of configuration information and a configuration information identifier corresponding to each configuration information; the second processor is configured to determine the network The side is the beam corresponding to the configuration information configured by the terminal; and obtains the configuration information identifier corresponding to the determined beam; and uses the configuration information corresponding to the obtained configuration information identifier in the first information as the network side to configure the terminal Configuration information; wherein, the configuration information includes at least one of the following: cell reselection information; measurement configuration information;
  • the second communication interface is configured to receive second information sent by the network side; the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal;
  • the second processor is configured to use configuration information that matches the height of the terminal itself in the second information as configuration information configured by the network side for the terminal; wherein, the configuration information includes at least one of the following : Cell reselection information; measurement configuration information;
  • the second communication interface is configured to receive third information sent by the network side; the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the position of the terminal relative to the network
  • the direction angle of the device; the second processor is configured to use the configuration information in the third information that matches the direction angle of the terminal position relative to the network device as the configuration information configured by the network side for the terminal; wherein,
  • the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • At least one of the embodiments of the present application further provides a network device, including: a first processor and a first memory configured to store a computer program that can run on the processor,
  • the first processor is configured to execute the steps of any method on the network device side when running the computer program.
  • At least one of the embodiments of the present application further provides a terminal, including: a second processor and a second memory configured to store a computer program that can run on the processor,
  • the second processor is configured to execute the steps of any method on the terminal side when running the computer program.
  • At least one embodiment of the embodiments of the present application also provides a storage medium on which a computer program is stored.
  • the computer program When the computer program is executed by a processor, it implements the steps of any method on the network device side, or implements any method on the terminal side. Steps of a method.
  • the terminal based on the location of the terminal or the selected beam, the terminal is selectively configured to measure only a part of the neighboring cells, so as to save the power consumption and measurement time of the terminal.
  • FIG. 1 is a schematic flowchart of a first information configuration method according to an embodiment of this application
  • FIG. 2 is a schematic flowchart of a second information configuration method according to an embodiment of the application
  • FIG. 3 is a schematic flowchart of a third information configuration method according to an embodiment of the application.
  • FIG. 4 is a schematic flowchart of a fourth information configuration method according to an embodiment of this application.
  • FIG. 5 is a schematic flowchart of a fifth information configuration method according to an embodiment of the application.
  • FIG. 6 is a schematic flowchart of a sixth information configuration method according to an embodiment of the application.
  • FIG. 7 is a schematic flowchart of a seventh information configuration method according to an embodiment of this application.
  • FIG. 8 is a schematic flowchart of an eighth information configuration method according to an embodiment of this application.
  • FIG. 9 is a schematic structural diagram of a first information configuration device according to an embodiment of this application.
  • FIG. 10 is a schematic structural diagram of a second information configuration device according to an embodiment of the application.
  • FIG. 11 is a schematic structural diagram of a third information configuration device according to an embodiment of this application.
  • FIG. 12 is a schematic structural diagram of a fourth information configuration device according to an embodiment of the application.
  • FIG. 13 is a schematic diagram of the structure of a network device according to an embodiment of the application.
  • FIG. 14 is a schematic diagram of a terminal structure according to an embodiment of the application.
  • FIG. 15 is a schematic structural diagram of an information configuration system according to an embodiment of the application.
  • LTE long-term evolution
  • 5G fifth-generation mobile communication technology
  • NR new air interface
  • cell reselection information and measurement configuration information also known as The configuration information of the neighboring cell is broadcast to the terminal through the base station.
  • This information can carry the same frequency and different frequency frequency points, as well as the information of the neighboring cell on each frequency point, including the physical cell identification and measurement parameters of the neighboring cell.
  • the configuration of neighboring cells is based on the cell, that is, a cell will only broadcast a list of neighboring cells with the same frequency, and a set of neighboring cells with different frequencies for each frequency point. District list.
  • the neighboring cell measurement is triggered only when the location of the terminal is at the edge of the cell. Depending on the location of the terminal, the frequency points or neighboring cells that can be measured are also different. If you ignore the location of the terminal in the cell and use the same neighbor list, the following problems will occur:
  • the terminal may cause additional measurements for the terminal, thereby increasing the energy consumption of the terminal; for example, in a cell, there are two frequency points, 2.6GHz and 4.9GHz, on the east side of the cell, and 4.9GHz is the highest frequency priority. However, on the west side of the cell, there is only a frequency of 2.6 GHz. If the same neighboring cell information is broadcast, the terminal on the west side will inevitably need to measure the frequency of 4.9 GHz frequently, which increases power consumption.
  • the same system information is sent on each beam of a cell, that is, the neighboring cell configuration information of the cell is sent, that is, the same neighboring cell configuration information is sent on each beam, so it is more redundant. .
  • the terminal is selectively configured to measure only part of the neighboring cell or part of the inter-frequency frequency point, thereby saving the terminal's power. Consumption and measurement time.
  • the beam may be identified by SSB or CSI-RS, that is, for the terminal, the reference signal corresponding to the beam may be SSB or CSI-RS.
  • the terminal can be selectively configured to measure only part of the neighboring cell or part of the inter-frequency frequency points based on the beam selected by the terminal (such as camping, etc.). There are two ways to achieve:
  • the network side directly sends the corresponding configuration information in each beam, and the terminal selectively receives the corresponding configuration information
  • the network side sends the corresponding relationship between the beam and the configuration information to the terminal, and the terminal selectively receives the corresponding configuration information.
  • the embodiment of the present application provides an information configuration method, which is applied to network equipment, and includes:
  • the configuration information includes at least one of the following:
  • the network device may be a base station, such as gNB in a 5G system.
  • the resource of the SSB or the resource of the CSI-RS can be used to transmit the configuration information corresponding to the beam.
  • the configuration information corresponding to the beam is sent on each beam
  • the configuration information corresponding to the beam is sent on the resource of each SSB or on the resource of each CSI-RS.
  • the resource associated with the SSB resource or the resource associated with the CSI-RS resource can also be used to send the configuration information corresponding to the beam.
  • the beam corresponding to the beam is sent on the resource associated with the SSB or on the resource (radio resource) associated with the CSI-RS Configuration information.
  • the resource associated with the SSB refers to the resource associated with the location of the SSB resource, and the associated resource can be set according to needs, for example, it can be a resource adjacent to the SSB resource location, or a resource associated with the SSB resource location.
  • the resource location is separated by one location resource, etc., which is not limited in the embodiment of the present application.
  • the resource associated with the CSI-RS refers to the resource associated with the CSI-RS resource location, and the associated resource can be set as required, for example, it can be a resource at a location adjacent to the CSI-RS resource location. , Or a resource that is one position away from the CSI-RS resource position, etc., which is not limited in the embodiment of the present application.
  • the cell reselection information includes at least one of the following information:
  • the start measurement threshold may include at least one of the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the inter-frequency measurement start measurement threshold (which can be expressed as SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the measurement configuration information includes at least one of the following information:
  • the start measurement threshold in the measurement configuration information may include the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the different frequency measurement start measurement threshold ( It can be expressed as at least one of SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the cell reselection information is used for the terminal to perform cell reselection in the idle state or in the deactivated state, and the measurement configuration information is used for measurement in the connected state.
  • the configuration information may be carried in a system message and sent to the terminal.
  • an embodiment of the present application also provides an information configuration method, which is applied to a terminal, as shown in FIG. 1, including the following steps:
  • Step 101 Determine a beam for receiving configuration information
  • Step 102 Receive configuration information corresponding to the determined beam on the determined beam; where,
  • the configuration information includes at least one of the following:
  • the terminal can receive system messages from the SSB with the highest signal strength.
  • step 101 may include:
  • the terminal uses the beam with the highest signal quality as the beam for receiving configuration information.
  • the terminal can also receive system messages from the beams where it resides.
  • step 101 may include:
  • the terminal uses the beam on which it resides as a beam for receiving configuration information.
  • the network device when the configuration information corresponding to the beam is sent on each beam, the network device sends the configuration information corresponding to the beam on the resources of each SSB, and receives and determines the beam on the determined beam.
  • the terminal receives the configuration information corresponding to the determined beam on the resources of the SSB; when the network device transmits the configuration information corresponding to the beam on each CSI-RS resource, the terminal receives the configuration information corresponding to the beam on the resource of the SSB, when receiving the configuration information corresponding to the determined beam on the CSI-RS resource, the terminal receives the configuration information corresponding to the determined beam on the resource of the CSI-RS; the network device sends the configuration information corresponding to the beam on the resource associated with the SSB.
  • the terminal receives the configuration information corresponding to the determined beam on the resource associated with the SSB; when the network device sends the configuration information corresponding to the beam on the resource associated with the CSI-RS, the terminal The configuration information corresponding to the determined beam is received on the resource associated with the CSI-RS.
  • an embodiment of the present application provides an information configuration method. As shown in FIG. 2, the method includes:
  • Step 201 The network device sends configuration information corresponding to the beam on each beam;
  • the configuration information includes at least one of the following:
  • Step 202 The terminal determines a beam for receiving configuration information; and receives configuration information corresponding to the determined beam on the determined beam.
  • the network device sends 8 beams, and a set of cell reselection information is sent on each beam.
  • the terminal only receives the cell reselection information on the currently camped beam.
  • the terminal changes beam camping that is, when the terminal changes the camped beam
  • the cell reselection information needs to be updated.
  • the terminal receives the cell reselection information on the changed camped beam.
  • the network device sends configuration information corresponding to the beam on each beam; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information; the terminal determines the beam for receiving the configuration information; And receive the configuration information corresponding to the determined beam on the determined beam. Since the terminal only receives the configuration information on the determined beam, that is, the terminal only receives the configuration information on part of the beam, so the terminal only corresponds to the received configuration information That is to say, the network side selectively configures the terminal to measure only part of the neighboring area, so that the power consumption of the terminal is greatly reduced; at the same time, the measurement time is also greatly reduced.
  • an embodiment of the present application provides an information configuration method, which is applied to a network device, and includes:
  • the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information;
  • the configuration information includes at least one of the following:
  • the network device may be a base station, such as gNB in a 5G system.
  • the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information.
  • each configuration information in the eight configuration information corresponds to a configuration information identifier.
  • the configuration information identifier is one of the following:
  • the identifier of the analog beam (such as ID, etc.) is identified by the SSB identifier, and the identifier of the digital beam is identified by the CSI-RS identifier.
  • the beam identifier may be at least one of the SSB identifier and the CSI-RS identifier.
  • the cell reselection information includes at least one of the following information:
  • the start measurement threshold may include at least one of the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the inter-frequency measurement start measurement threshold (which can be expressed as SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the measurement configuration information includes at least one of the following information:
  • the start measurement threshold in the measurement configuration information may include the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the different frequency measurement start measurement threshold ( It can be expressed as at least one of SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the cell reselection information is used for the terminal to perform cell reselection in the idle state or in the deactivated state, and the measurement configuration information is used for measurement in the connected state.
  • the first information may be carried in a system message and sent to the terminal.
  • the embodiment of the present application also provides an information configuration method, which is applied to a terminal, as shown in FIG. 3, including the following steps:
  • Step 301 Receive the first information sent by the network side
  • the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information.
  • Step 302 Determine the beam corresponding to the configuration information configured by the network side
  • Step 303 Obtain a configuration information identifier corresponding to the determined beam
  • Step 304 Use the configuration information corresponding to the obtained configuration information identifier in the first information as the configuration information configured by the network side for itself;
  • the configuration information includes at least one of the following:
  • the terminal can receive system messages from the SSB with the highest signal strength.
  • step 302 may include:
  • the terminal uses the beam with the highest signal quality as the determined beam.
  • the terminal can also receive system messages from the beams where it resides.
  • step 302 may include:
  • the terminal uses the beam on which it resides as the determined beam.
  • an embodiment of the present application provides an information configuration method. As shown in FIG. 4, the method includes:
  • Step 401 The network device sends the first information to the terminal;
  • the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information;
  • the configuration information includes at least one of the following:
  • Step 402 The terminal receives the first information sent by the network device
  • Step 403 The terminal determines the beam corresponding to the configuration information configured by the network side; and obtains the configuration information identifier corresponding to the determined beam;
  • Step 404 The terminal uses the configuration information corresponding to the obtained configuration information identifier in the first information as the configuration information configured by the network side for itself.
  • the first information sent by the network device includes 8 SSB IDs and 8 groups of cell reselection information.
  • the SSB ID corresponds to the cell reselection information on a one-to-one basis.
  • the terminal does not need to re-receive reselection information or measurement configuration when changing beams, and only needs to use the cell reselection information corresponding to the new beam for cell reselection.
  • the network device sends first information to the terminal; the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information; wherein, the configuration information includes at least one of the following: Select information; measure configuration information; and the terminal determines the beam corresponding to the configuration information configured by the network side; and obtains the configuration information identifier corresponding to the determined beam; the terminal combines the first information with the obtained configuration information identifier The corresponding configuration information is used as the configuration information configured by the network side for itself.
  • the terminal Since the terminal only uses the configuration information corresponding to the configuration information identifier corresponding to the determined beam as the configuration information used by itself, the terminal only corresponds to the configuration information configured for itself That is to say, the network side selectively configures the terminal to measure only part of the neighboring area, so that the power consumption of the terminal is greatly reduced; at the same time, the measurement time is also greatly reduced.
  • the first implementation is to selectively configure the terminal to measure only part of the neighboring cell or part of the inter-frequency frequency point based on the height of the terminal;
  • the terminal is selectively configured based on the direction angle to measure only part of the neighboring cells or part of the inter-frequency frequency points.
  • an embodiment of the present application provides an information configuration method, which is applied to a network device, and includes:
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal;
  • the configuration information includes at least one of the following:
  • the network device may be a base station, such as gNB in a 5G system.
  • the first parameter may be the altitude or the air pressure value.
  • Each altitude or each pressure value can be configured with a corresponding configuration information.
  • the cell reselection information includes at least one of the following information:
  • the start measurement threshold may include at least one of the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the inter-frequency measurement start measurement threshold (which can be expressed as SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the measurement configuration information includes at least one of the following information:
  • the start measurement threshold in the measurement configuration information may include the same-frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the inter-frequency measurement start measurement threshold ( It can be expressed as at least one of SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the cell reselection information is used for the terminal to perform cell reselection in the idle state or in the deactivated state, and the measurement configuration information is used for measurement in the connected state.
  • the second information may be carried in a system message and sent to the terminal.
  • the embodiment of the present application also provides an information configuration method, which is applied to a terminal, as shown in FIG. 5, including the following steps:
  • Step 501 Receive second information sent by the network side
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter represents the height of the terminal;
  • the configuration information includes at least one of the following:
  • Step 502 Use the configuration information that matches the height of the self in the second information as the configuration information configured by the network side for the self.
  • the terminal determines the configuration information configured for itself on the network side, it needs to determine its own height.
  • the method may further include:
  • an altimeter or barometer may be provided on the terminal, and the terminal may use the altimeter or barometer to obtain its own altitude.
  • the terminal may match the height of the terminal with the height information corresponding to the configuration information.
  • the height information corresponding to the configuration information may be a height range, and the terminal uses the configuration information corresponding to the height range of its own height as the configuration information matching its own height; the height information corresponding to the configuration information It can also be a height threshold.
  • the terminal compares its own height with a corresponding height threshold, and compares its height to a height threshold greater than or equal to the height threshold (of all height thresholds in the second information that are less than or equal to the height of the terminal).
  • the configuration information corresponding to the maximum value is used as the configuration information matching the height of the self.
  • an embodiment of the present application provides an information configuration method. As shown in Fig. 6, the method includes:
  • Step 601 The network device sends second information to the terminal;
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter represents the height of the terminal;
  • the configuration information includes at least one of the following:
  • Step 602 The terminal receives the second information sent by the network device; and uses the configuration information matching the height of itself in the second information as the configuration information configured by the network side for itself.
  • the network device sends the second information to the terminal; the second information includes at least one configuration information and the first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal; wherein, the The configuration information includes at least one of the following: cell reselection information; measurement configuration information; the terminal receives the second information sent by the network device; and uses the configuration information in the second information that matches its own height as the configuration information configured by the network side for itself Configuration information.
  • the terminal Since the terminal only uses the configuration information that matches its own height as its own configuration information, the terminal only performs measurements corresponding to the configuration information configured for itself, that is, the network side selectively configures the terminal to perform only In this way, the measurement of part of the neighboring area greatly reduces the power consumption of the terminal; at the same time, it also greatly reduces the measurement time.
  • an embodiment of the present application provides an information configuration method, which is applied to a network device, and includes:
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter characterizes the direction and angle of the terminal position relative to the network device;
  • the configuration information includes at least one of the following:
  • the network device may be a base station, such as gNB in a 5G system.
  • the direction angle refers to the angle of the terminal in the network device coordinate system. For example, if the terminal is on the east side of the network device, the direction angle is 90°, and if the terminal is on the south side of the network device, the direction angle is 180°. In actual application, a corresponding configuration information can be configured for each direction angle.
  • the cell reselection information includes at least one of the following information:
  • the start measurement threshold may include at least one of the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the inter-frequency measurement start measurement threshold (which can be expressed as SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the measurement configuration information includes at least one of the following information:
  • the start measurement threshold in the measurement configuration information may include the same frequency measurement start measurement threshold (which can be expressed as SintrasearchP) and the different frequency measurement start measurement threshold ( It can be expressed as at least one of SnonintrasearchP).
  • the terminal when the measurement value of the serving cell (for example, the cell selection reception level value (which can be expressed as Srxlev)) is lower than the same-frequency measurement start measurement threshold, the terminal starts the measurement of the same-frequency neighboring cell.
  • the measurement value of the serving cell for example, the cell selection reception level value (which can be expressed as Srxlev)
  • the terminal When the measured value of the serving cell is lower than the inter-frequency measurement start measurement threshold, the terminal starts the measurement of the inter-frequency neighboring cell.
  • the cell reselection information is used for the terminal to perform cell reselection in the idle state or in the deactivated state, and the measurement configuration information is used for measurement in the connected state.
  • the third information may be carried in a system message and sent to the terminal.
  • the embodiment of the present application also provides an information configuration method, which is applied to a terminal, as shown in FIG. 7, including the following steps:
  • Step 701 Receive the third information sent by the network side
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the direction angle of the terminal position relative to the network device.
  • Step 702 Use the configuration information matching the direction and angle of the own position relative to the network device in the third information as the configuration information configured for the network side.
  • the configuration information includes at least one of the following:
  • the terminal determines the configuration information configured for itself on the network side, it needs to determine its own direction angle relative to the network device.
  • the method may further include:
  • the terminal may be provided with a sensor, and the direction angle of the terminal relative to the network device can be determined according to the sensor. For example, according to at least one of the compass and the gyroscope, the direction angle of the self is determined.
  • the terminal can also determine the direction angle according to the received wireless signal. For example, the base station uses beam 1 to shoot north, beam 2 to the east, and so on.
  • the terminal judges the terminal relative to the network device based on the signal strength of several received beams. The direction angle.
  • the terminal may compare its direction angle relative to the network device with the direction angle corresponding to the configuration information.
  • Information to match may be a direction angle range, and the terminal uses the configuration information corresponding to the direction angle range of the direction angle of its own position relative to the network device as the direction of its own position relative to the network device. The configuration information that matches the angle.
  • an embodiment of the present application provides an information configuration method. As shown in FIG. 8, the method includes:
  • Step 801 The network device sends third information to the terminal
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the direction angle of the terminal position relative to the network device;
  • the configuration information includes at least one of the following:
  • Step 802 The terminal receives the third information sent by the network device; and uses the configuration information that matches the direction and angle of its position relative to the network device in the third information as the configuration information configured by the network side for itself.
  • the network device sends the third information to the terminal; here, the third information includes at least one configuration information and the second parameter corresponding to each configuration information; the second parameter characterizes the position of the terminal relative to the network device
  • the configuration information includes at least one of the following: cell reselection information; measurement configuration information; the terminal receives the third information sent by the network device; compares the third information with its own position relative to the network device
  • the configuration information that matches the direction and angle is used as the configuration information configured by the network side for itself. Since the terminal only uses the configuration information that matches the direction and angle of its own position relative to the network device as its own configuration information, the terminal only performs configuration information for itself.
  • the configured configuration information corresponds to the measurement, that is, the network side selectively configures the terminal to measure only part of the neighboring cells, which greatly reduces the power consumption of the terminal; at the same time, the measurement time is also greatly reduced.
  • the embodiment of the present application also provides an information configuration device, which is set on a network device, and includes:
  • the first configuration unit is configured to send configuration information corresponding to the beam on each beam;
  • the configuration information includes at least one of the following:
  • the first configuration unit is further configured to send configuration information corresponding to the beam on the resource of each SSB when sending configuration information corresponding to the beam on each beam; or, The configuration information corresponding to the beam is sent on the resource associated with the SSB.
  • the first configuration unit may be implemented by the processor in the information configuration device in combination with a communication interface.
  • the embodiment of the present application also provides an information configuration device, which is set on a terminal. As shown in FIG. 9, the device includes:
  • the first determining unit 91 is configured to determine a beam for receiving configuration information
  • the first receiving unit 92 is configured to receive configuration information corresponding to the determined beam on the determined beam; wherein,
  • the configuration information includes at least one of the following:
  • the first determining unit 91 is configured to:
  • the beam on which the terminal itself resides is used as the beam for receiving configuration information.
  • the first receiving unit 92 is configured to: when receiving configuration information corresponding to the determined beam on the determined beam, on the resources of the SSB or on each channel state information reference signal CSI-RS The configuration information corresponding to the determined beam is received on the resource of, or the configuration information corresponding to the determined beam is received on the resource associated with the SSB or the resource associated with the CSI-RS.
  • the first determining unit 91 can be implemented by a processor in an information configuration device; the first receiving unit 92 can be implemented by a communication interface in the information configuration device.
  • the embodiment of the present application also provides an information configuration device, which is set on a network device, and includes:
  • the second configuration unit is configured to send first information to the terminal; the first information includes at least one configuration information and a configuration information identifier corresponding to each configuration information; wherein,
  • the configuration information includes at least one of the following:
  • the second configuration unit may be implemented by the processor in the information configuration device in combination with a communication interface.
  • the embodiment of the present application also provides an information configuration device, which is set on a terminal. As shown in FIG. 10, the device includes:
  • the second receiving unit 101 is configured to receive first information sent by the network side; the first information includes at least one piece of configuration information and a configuration information identifier corresponding to each configuration information;
  • the second determining unit 102 is configured to determine the beam corresponding to the configuration information configured for the terminal on the network side;
  • the first processing unit 103 is configured to obtain a configuration information identifier corresponding to the determined beam; and use the configuration information corresponding to the obtained configuration information identifier in the first information as the configuration information configured by the network side for the terminal; wherein ,
  • the configuration information includes at least one of the following:
  • the second determining unit 102 is configured to:
  • the beam on which the terminal itself resides is regarded as the determined beam.
  • the second receiving unit 102 can be implemented by a communication interface in an information configuration device; the second determining unit 102 and the first processing unit 103 can be implemented by a processor in the information configuration device.
  • the embodiment of the present application also provides an information configuration device, which is set on a network device, and includes:
  • the third configuration unit is configured to send second information to the terminal; the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal; wherein,
  • the configuration information includes at least one of the following:
  • the third configuration unit may be implemented by the processor in the information configuration device in combination with a communication interface.
  • the embodiment of the present application also provides an information configuration device, which is set on a terminal. As shown in FIG. 11, the device includes:
  • the third receiving unit 111 is configured to receive second information sent by the network side; the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter represents the height of the terminal;
  • the second processing unit 112 is configured to use the configuration information matching the height of the terminal in the second information as the configuration information configured by the network side for the terminal; wherein,
  • the configuration information includes at least one of the following:
  • the device may further include: a third determining unit configured to determine the height of the terminal itself.
  • the third receiving unit 111 can be implemented by a communication interface in the information configuration device; the third determining unit and the second processing unit 112 can be implemented by a processor in the information configuration device.
  • the embodiment of the present application also provides an information configuration device, which is set on a network device, and includes:
  • the fourth configuration unit is configured to send third information to the terminal; the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the direction angle of the terminal position relative to the network device ;among them,
  • the configuration information includes at least one of the following:
  • the fourth configuration unit may be implemented by the processor in the information configuration device in combination with a communication interface.
  • the embodiment of the present application also provides an information configuration device, which is set on a terminal. As shown in FIG. 12, the device includes:
  • the fourth receiving unit 121 is configured to receive third information sent by the network side; the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter represents the position of the terminal relative to the network device ⁇ directional angle;
  • the third processing unit 122 is configured to use the configuration information in the third information that matches the direction and angle of the terminal position relative to the network device as the configuration information configured by the network side for the terminal; wherein,
  • the configuration information includes at least one of the following:
  • the apparatus may further include: a fourth determining unit configured to determine the direction angle of the terminal's own position relative to the network device.
  • the fourth receiving unit 121 can be implemented by a communication interface in the information configuration device; the fourth determining unit and the third processing unit 122 can be implemented by a processor in the information configuration device.
  • the information configuration device provided in the above embodiment performs information configuration
  • only the division of the above-mentioned program modules is used as an example for illustration.
  • the above-mentioned processing can be allocated by different program modules as needed. That is, the internal structure of the device is divided into different program modules to complete all or part of the processing described above.
  • the information configuration device provided in the above-mentioned embodiment and the information configuration method embodiment belong to the same concept, and the specific implementation process is detailed in the method embodiment, which will not be repeated here.
  • the embodiment of the present application provides a network device.
  • the network device 130 includes:
  • the first communication interface 131 can exchange information with the terminal
  • the first processor 132 is connected to the first communication interface 131 to implement information interaction with the terminal, and is configured to execute the method provided by one or more technical solutions on the network device side when it is configured to run a computer program.
  • the computer program is stored in the first memory 133.
  • the first processor 132 is configured to communicate with each other via the first communication interface 131.
  • the configuration information corresponding to the beam is sent on each beam; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the first processor 132 when the first processor 132 is configured to send configuration information corresponding to the beam on each beam through the first communication interface 131,
  • the configuration information corresponding to the beam is sent on the resources associated with the SSB or on the resources associated with the CSI-RS.
  • the first processor 132 When the network side sends the corresponding relationship between the beam and the configuration information to the terminal, and the terminal selectively receives the corresponding configuration information, the first processor 132 is configured to send the first communication interface 131 to the terminal through the first communication interface 131.
  • Information includes at least one configuration information and a configuration information identifier corresponding to each configuration information; wherein, the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the first processor 132 is configured to send the second information to the terminal through the first communication interface 131;
  • the second information includes at least one configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal; wherein, the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the first processor 132 is configured to send third information to the terminal through the first communication interface 131;
  • the third information includes at least one configuration information and a second parameter corresponding to each configuration information; the second parameter characterizes the direction angle of the terminal position relative to the network device; wherein, the configuration information includes at least one of the following: Selection information; measurement configuration information.
  • bus system 134 is configured to implement connection and communication between these components.
  • bus system 134 also includes a power bus, a control bus, and a status signal bus.
  • various buses are marked as the bus system 134 in FIG. 13.
  • the first memory 133 in the embodiment of the present application is configured to store various types of data to support the operation of the network device 130. Examples of such data include: any computer program used to operate on the network device 130.
  • the methods disclosed in the foregoing embodiments of the present application may be applied to the first processor 132 or implemented by the first processor 132.
  • the first processor 132 may be an integrated circuit chip with signal processing capability. In the implementation process, the steps of the foregoing method may be completed by an integrated logic circuit of hardware in the first processor 132 or instructions in the form of software.
  • the aforementioned first processor 132 may be a general-purpose processor, a digital signal processor (DSP, Digital Signal Processor), or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, and the like.
  • the first processor 132 may implement or execute the methods, steps, and logical block diagrams disclosed in the embodiments of the present application.
  • the general-purpose processor may be a microprocessor or any conventional processor or the like.
  • the software module may be located in a storage medium, and the storage medium is located in the first memory 133.
  • the first processor 132 reads the information in the first memory 133 and completes the steps of the foregoing method in combination with its hardware.
  • the network device 130 may be configured by one or more application specific integrated circuits (ASIC, Application Specific Integrated Circuit), DSP, programmable logic device (PLD, Programmable Logic Device), and complex programmable logic device (CPLD). , Complex Programmable Logic Device, Field-Programmable Gate Array (FPGA, Field-Programmable Gate Array), general-purpose processor, controller, microcontroller (MCU, Micro Controller Unit), microprocessor (Microprocessor), or other electronics The component is implemented and configured to perform the aforementioned method.
  • ASIC Application Specific Integrated Circuit
  • DSP digital signal processor
  • PLD programmable logic device
  • CPLD complex programmable logic device
  • FPGA Field-Programmable Gate Array
  • MCU Micro Controller Unit
  • Microprocessor Microprocessor
  • the terminal 140 includes:
  • the second communication interface 141 can exchange information with network equipment
  • the second processor 142 is connected to the second communication interface 141 to implement information interaction with network equipment, and is configured to execute the method provided by one or more technical solutions on the terminal side when it is configured to run a computer program.
  • the computer program is stored in the second storage 143.
  • the second processor 142 is configured to determine the beam for receiving the configuration information;
  • the second communication interface 141 is configured to receive configuration information corresponding to the determined beam on the determined beam; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the second communication interface 141 is configured to: when receiving the configuration information corresponding to the determined beam on the determined beam, receive the data on the SSB resource or on the CSI-RS resource.
  • the configuration information corresponding to the determined beam; or, the configuration information corresponding to the determined beam is received on the resource associated with the SSB or on the resource associated with the CSI-RS.
  • the second communication interface 141 is configured to receive the first information sent by the network side; the first The information includes at least one configuration information and a configuration information identifier corresponding to each configuration information; the second processor 142 is configured to determine the beam corresponding to the configuration information configured by the network side; and obtain the configuration information corresponding to the determined beam Identifier; and the configuration information corresponding to the obtained configuration information identifier in the first information is used as the configuration information configured by the network side for the terminal; wherein, the configuration information includes at least one of the following: cell reselection information; measurement Configuration information.
  • the second processor 142 is configured to:
  • the beam on which the terminal itself resides is regarded as the determined beam.
  • the second communication interface 141 is configured to receive second information sent by the network side; the second information includes At least one piece of configuration information and a first parameter corresponding to each configuration information; the first parameter characterizes the height of the terminal; the second processor 142 is configured to compare the height of the terminal with the height of the terminal in the second information; The matched configuration information is used as the configuration information configured by the network side for the terminal; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the second processor 142 is further configured to determine the height of the terminal itself.
  • the second communication interface is configured to receive the third information sent by the network side; the third information includes at least one Configuration information and a second parameter corresponding to each configuration information; the second parameter characterizes the direction angle of the terminal position relative to the network device; the second processor is configured to compare the position of the terminal relative to the terminal position in the third information
  • the configuration information matching the direction and angle of the network device is used as the configuration information configured by the network side for the terminal; wherein the configuration information includes at least one of the following: cell reselection information; measurement configuration information.
  • the second processor 142 is further configured to determine the direction angle of the terminal's own position relative to the network device.
  • bus system 144 is configured to implement connection and communication between these components.
  • bus system 144 also includes a power bus, a control bus, and a status signal bus.
  • various buses are marked as the bus system 144 in FIG. 14.
  • the second memory 143 in the embodiment of the present application is configured to store various types of data to support the operation of the terminal 140. Examples of such data include: any computer program used to operate on the terminal 140.
  • the methods disclosed in the foregoing embodiments of the present application may be applied to the second processor 142 or implemented by the second processor 142.
  • the second processor 142 may be an integrated circuit chip with signal processing capability. In the implementation process, the steps of the foregoing method may be completed by an integrated logic circuit of hardware in the second processor 142 or instructions in the form of software.
  • the aforementioned second processor 142 may be a general-purpose processor, a DSP, or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, or the like.
  • the second processor 142 may implement or execute the methods, steps, and logical block diagrams disclosed in the embodiments of the present application.
  • the general-purpose processor may be a microprocessor or any conventional processor or the like.
  • the software module may be located in a storage medium, and the storage medium is located in the second memory 143.
  • the second processor 142 reads the information in the second memory 143 and completes the steps of the foregoing method in combination with its hardware.
  • the terminal 140 may be implemented by one or more ASICs, DSPs, PLDs, CPLDs, FPGAs, general-purpose processors, controllers, MCUs, Microprocessors, or other electronic components, and is configured to perform the foregoing methods.
  • the memory (the first memory 133 and the second memory 143) of the embodiment of the present application may be a volatile memory or a non-volatile memory, and may also include both volatile and non-volatile memory.
  • the non-volatile memory can be read-only memory (ROM, Read Only Memory), programmable read-only memory (PROM, Programmable Read-Only Memory), and erasable programmable read-only memory (EPROM, Erasable Programmable Read- Only Memory, Electrically Erasable Programmable Read-Only Memory (EEPROM, Electrically Erasable Programmable Read-Only Memory), magnetic random access memory (FRAM, ferromagnetic random access memory), flash memory (Flash Memory), magnetic surface memory , CD-ROM, or CD-ROM (Compact Disc Read-Only Memory); magnetic surface memory can be magnetic disk storage or tape storage.
  • the volatile memory may be a random access memory (RAM, Random Access Memory), which is used as an external cache.
  • RAM random access memory
  • SRAM static random access memory
  • SSRAM synchronous static random access memory
  • Synchronous Static Random Access Memory Synchronous Static Random Access Memory
  • DRAM Dynamic Random Access Memory
  • SDRAM Synchronous Dynamic Random Access Memory
  • DDRSDRAM Double Data Rate Synchronous Dynamic Random Access Memory
  • ESDRAM Enhanced Synchronous Dynamic Random Access Memory
  • SLDRAM synchronous connection dynamic random access memory
  • DRRAM Direct Rambus Random Access Memory
  • the memories described in the embodiments of the present application are intended to include, but are not limited to, these and any other suitable types of memories.
  • the embodiment of the present application also provides an information transmission system. As shown in FIG. 15, the system includes: a network device 151 and a terminal 152.
  • the embodiment of the present application also provides a storage medium, that is, a computer storage medium, specifically a computer-readable storage medium, such as a first memory 133 storing a computer program, which can be used by the network device 130 Is executed by the first processor 132 to complete the steps described in the aforementioned network device-side method.
  • a second memory 143 storing a computer program is included.
  • the computer program can be executed by the second processor 142 of the terminal 140 to complete the steps described in the aforementioned terminal-side method.
  • the computer-readable storage medium may be a memory such as FRAM, ROM, PROM, EPROM, EEPROM, Flash Memory, magnetic surface memory, optical disk, or CD-ROM.

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Abstract

本申请公开了一种信息配置方法、装置、网络设备、终端及存储介质。其中方法,包括:网络设备在每个波束上发送与波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。

Description

信息配置方法、装置、相关设备及存储介质
相关申请的交叉引用
本申请基于申请号为201910894020.2、申请日为2019年09月20日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及无线通信领域,尤其涉及一种信息配置方法、装置、相关设备及存储介质。
背景技术
小区重选信息和测量配置信息可以通过基站广播发给终端,这些信息可以携带同频与异频频点,以及每个频点上邻区的信息,包括邻区物理小区标识和测量参数。
发明内容
为解相关技术问题,本申请实施例提供一种信息配置方法、装置、相关设备及存储介质。
本申请实施例的技术方案是这样实现的:
本申请的至少一个实施例提供了一种信息配置方法,应用于网络设备,包括:
在每个波束上发送与波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,在每个波束上发送与波束对应 的配置信息时,所述方法包括:
在每个同步信号/物理广播信道块(SSB,SS/PBCH block)的资源上或在每个信道状态信息参考信号(CSI-RS)的资源上发送与波束对应的配置信息;
或者,
在与SSB相关联的资源上或在与CSI-RS相关联的资源上发送与波束对应的配置信息。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于终端,包括:
确定接收配置信息的波束;
在确定的波束上接收与确定的波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述确定接收配置信息的波束,包括:
将信号质量最高的波束作为接收配置信息的波束;
或者,
将自身驻留的波束作为接收配置信息的波束。
此外,根据本申请的至少一个实施例,所述在确定的波束上接收与确定的波束对应的配置信息时,所述方法包括:
在SSB的资源上或在CSI-RS的资源上接收与确定的波束对应的配置信息;
或者,
在与SSB相关联的资源上或在与CSI-RS相关联的资源上接收与确定的波束对应的配置信息。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述配置信息标识为以下之一:
SSB标识;
CSI-RS标识;
波束标识。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信 息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于终端,包括:
接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;
确定网络侧为自身配置的配置信息对应的波束;
获得与确定的波束对应的配置信息标识;
将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为自身配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述确定网络侧为自身配置的配置信息对应的波束,包括:
将信号质量最高的波束作为确定的波束;
或者,
将自身驻留的波束作为确定的波束。
此外,根据本申请的至少一个实施例,所述配置信息标识为以下之一:
SSB标识;
CSI-RS标识;
波束标识。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于终端,包括:
接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;
将所述第二信息中与自身的高度相匹配的配置信息作为网络侧为自身配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述方法还包括:
确定自身的高度。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置方法,应用于终端,包括:
接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;
将所述第三信息中与自身位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为自身配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
此外,根据本申请的至少一个实施例,所述方法还包括:
确定自身位置相对于网络设备的方向角度。
此外,根据本申请的至少一个实施例,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
此外,根据本申请的至少一个实施例,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第一配置单元,配置为在每个波束上发送与波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第一确定单元,配置为确定接收配置信息的波束;
第一接收单元,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第二配置单元,配置为向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第二接收单元,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;
第二确定单元,配置为确定网络侧为终端配置的配置信息对应的波束;
第一处理单元,配置为获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第三配置单元,配置为向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第三接收单元,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;
第二处理单元,配置为将所述第二信息中与终端的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第四配置单元,配置为向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种信息配置装置,包括:
第四接收单元,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;
第三处理单元,配置为将所述第三信息中与终端位置相对于网络设备 的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
本申请实施例的至少一个实施例还提供了一种网络设备,包括:第一处理器及第一通信接口;其中,
所述第一处理器,配置为通过所述第一通信接口在每个波束上发送与波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第一处理器,配置为通过所述第一通信接口向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第一处理器,配置为通过所述第一通信接口向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第一处理器,配置为通过所述第一通信接口向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
本申请实施例的至少一个实施例还提供了一种终端,包括:第二处理器及第二通信接口;其中,
所述第二处理器,配置为确定接收配置信息的波束;所述第二通信接口,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,所 述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第二通信接口,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;所述第二处理器,配置为确定网络侧为终端自身配置的配置信息对应的波束;并获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第二通信接口,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;所述第二处理器,配置为将所述第二信息中与所述终端自身的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
或者,
所述第二通信接口,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;所述第二处理器,配置为将所述第三信息中与终端位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
本申请实施例的至少一个实施例还提供了一种网络设备,包括:第一处理器和配置为存储能够在处理器上运行的计算机程序的第一存储器,
其中,所述第一处理器配置为运行所述计算机程序时,执行上述网络设备侧任一方法的步骤。
本申请实施例的至少一个实施例还提供了一种终端,包括:第二处理器和配置为存储能够在处理器上运行的计算机程序的第二存储器,
其中,所述第二处理器配置为运行所述计算机程序时,执行上述终端侧任一方法的步骤。
本申请实施例的至少一个实施例还提供了一种存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现上述网络设备侧任一方法的步骤,或者实现上述终端侧任一方法的步骤。
在本申请实施例中,基于终端的位置或选择的波束,有选择性地配置终端只测量部分邻区,如此,节省终端的功耗和测量时长。
附图说明
图1为本申请实施例第一种信息配置方法流程示意图;
图2为本申请实施例第二种信息配置方法流程示意图;
图3为本申请实施例第三种信息配置方法流程示意图;
图4为本申请实施例第四种信息配置方法流程示意图;
图5为本申请实施例第五种信息配置方法流程示意图;
图6为本申请实施例第六种信息配置方法流程示意图;
图7为本申请实施例第七种信息配置方法流程示意图;
图8为本申请实施例第八种信息配置方法流程示意图;
图9为本申请实施例第一种信息配置装置结构示意图;
图10为本申请实施例第二种信息配置装置结构示意图;
图11为本申请实施例第三种信息配置装置结构示意图;
图12为本申请实施例第四种信息配置装置结构示意图;
图13为本申请实施例网络设备结构示意图;
图14为本申请实施例终端结构示意图;
图15为本申请实施例信息配置系统结构示意图。
具体实施方式
结合附图及实施例对本申请再作进一步详细的描述。
在无线通信系统中,比如长期演进(LTE)系统和第五代移动通信技术(5G)系统(也可以称为新空口(NR)系统),小区重选信息和测量配置信息(也可以称为邻区的配置信息)是通过基站广播发给终端的,这些信息可以携带同频与异频频点,以及每个频点上邻区的信息,包括邻区物理 小区标识和测量参数。
通常,在配置小区重选信息和测量配置信息时,邻区的配置是以小区为单位的,即一个小区会仅广播一套同频邻区列表,和每个频点一套的异频邻区列表。
终端所处的位置在小区边缘时,才会触发邻区测量,根据终端的位置不同,能测得的频点或邻区也不尽相同。如果无视终端在小区中的位置,都用相同的邻区列表,会出现以下问题:
第一,可能会导致终端额外的测量,从而增大终端的能耗;比如,在一个小区内,小区的东侧有2.6GHz和4.9GHz两个频点,而4.9GHz是最高频率优先级,但在小区的西侧,只有2.6GHz的频点,如果广播相同的邻区信息,必然导致西侧的终端需要经常去测量4.9GHz频点,增大了功耗。
第二,在一个小区的每个波束上都发送相同的系统信息,即发送该小区的邻区配置信息,也就是说,在每个波束上都发送相同的邻区配置信息,所以比较冗余。
从上面的描述可以看出,邻区的配置是不合理的。
基于此,在本申请的各种实施例中,基于终端的位置或选择(比如驻留等)的波束,有选择性地配置终端只测量部分邻区或部分异频频点,从而节省终端的功耗和测量时长。
其中,在本申请实施例中,波束可以用SSB来标识,也可以用CSI-RS来标识,也就是说,对于终端来说,波束对应的参考信号可以是SSB,也可以是CSI-RS。
可以基于终端选择(比如驻留等)的波束来选择性地配置终端只测量部分邻区或部分异频频点。可以有以下两种实现方式:
第一种实现方式,网络侧直接在每个波束发送对应的配置信息,终端选择性地接收对应的配置信息;
第二种实现方式,网络侧向终端发送波束与配置信息的对应关系,终端选择性地接收对应的配置信息。
下面详细描述上述两种实现方式。
对于第一种实现方式,本申请实施例提供了一种信息配置方法,应用 于网络设备,包括:
在每个波束上发送与波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,实际应用时,所述网络设备可以是基站,比如5G系统中的gNB等。
可以利用SSB的资源或CSI-RS的资源(无线资源)发送与波束对应的配置信息。
基于此,在一实施例中,在每个波束上发送与波束对应的配置信息时,在每个SSB的资源上或在每个CSI-RS的资源上发送与波束对应的配置信息。
实际应用时,还可以利用与SSB资源关联的资源或利用与CSI-RS资源关联的资源发送与波束对应的配置信息。
基于此,在一实施例中,在每个波束上发送与波束对应的配置信息时,在与SSB相关联的资源或在与CSI-RS相关联的资源上(无线资源)上发送与波束对应的配置信息。
其中,所述与SSB相关联的资源是指与SSB资源位置相关联的资源,所述相关联的资源可以根据需要来设置,比如可以是与SSB资源位置相邻位置的资源,或者是与SSB资源位置相隔一个位置的资源等,本申请实施例对此不作限定。
相应地,与CSI-RS相关联的资源是指与CSI-RS资源位置相关联的资源,所述相关联的资源可以根据需要来设置,比如可以是与CSI-RS资源位置相邻位置的资源,或者是与CSI-RS资源位置相隔一个位置的资源等,本申请实施例对此不作限定。
在一实施例中,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
这里,实际应用时,所述启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
在一实施例中,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
其中,实际应用时,与小区重选信息中启动测量门限类似的,所述测量配置信息中的启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
实际应用时,小区重选信息是用于在空闲态或去激活态下终端进行小区重选,测量配置信息用于在连接态终端进行测量。
实际应用时,所述配置信息可以携带在系统消息中发送给所述终端。
对应地,本申请实施例还提供了一种信息配置方法,应用于终端,如图1所示,包括以下步骤:
步骤101:确定接收配置信息的波束;
步骤102:在确定的波束上接收与确定的波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
这里,实际应用时,所述终端可以从信号强度最大的SSB上接收系统消息。
基于此,在一实施例中,步骤101的具体实现可以包括:
所述终端将信号质量最高的波束作为接收配置信息的波束。
实际应用时,所述终端还可以从驻留的波束上接收系统消息。
基于此,在一实施例中,步骤101的具体实现可以包括:
所述终端将自身驻留的波束作为接收配置信息的波束。
在一实施例中,在每个波束上发送与波束对应的配置信息时,网络设备在每个SSB的资源上发送与波束对应的配置信息的情况下,在确定的波束上接收与确定的波束对应的配置信息时,所述终端在SSB的资源上接收与确定的波束对应的配置信息;网络设备在每个CSI-RS的资源上发送与波束对应的配置信息的情况下,在确定的波束上接收与确定的波束对应的配置信息时,所述终端在CSI-RS的资源上接收与确定的波束对应的配置信息;网络设备在与SSB相关联的资源上发送与波束对应的配置信息的情况下,所述终端在与SSB相关联的资源上接收与确定的波束对应的配置信息;网络设备在与CSI-RS相关联的资源上发送与波束对应的配置信息的情况下,所述终端在与CSI-RS相关联的资源上接收与确定的波束对应的配置信息。
基于上述网络设备和终端的操作,本申请实施例提供一种信息配置方法,如图2所示,该方法包括:
步骤201:网络设备在每个波束上发送与波束对应的配置信息;
其中,所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
步骤202:终端确定接收配置信息的波束;并在确定的波束上接收与确定的波束对应的配置信息。
需要说明的是:网络设备和终端的具体处理过程已在上文详述,这里不再赘述。
针对上述实施例的方案,示例性地,假设网络设备发送8个波束,每个波束上发送一套小区重选信息。对于终端,终端只接收当前驻留波束上 的小区重选信息。当终端换波束驻留时,即终端更换驻留的波束时,需要更新小区重选信息,此时,终端接收更换后的驻留波束上的小区重选信息。
在上述实施例中,网络设备在每个波束上发送与波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;终端确定接收配置信息的波束;并在确定的波束上接收与确定的波束对应的配置信息,由于终端只接收确定的波束上的配置信息,即终端只接收了部分波束上的配置信息,所以终端就只进行接收的配置信息对应的测量,也就是说网络侧选择性地配置终端只进行部分邻区的测量,如此,大大降低了终端的功耗;同时,还大大降低了测量时长。
对于第二种实现方式,本申请实施例提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,实际应用时,所述网络设备可以是基站,比如5G系统中的gNB等。
所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识,示例性地,假设有八个配置信息,则八个配置信息中每个配置信息对应有一个配置信息标识。
在一实施例中,所述配置信息标识为以下之一:
SSB标识;
CSI-RS标识;
波束标识。
其中,实际应用时,模拟波束的标识(比如ID等)用SSB标识来标识,数字波束的标识用CSI-RS标识来标识。波束标识可以是SSB标识和CSI-RS标识中至少之一。
在一实施例中,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
这里,实际应用时,所述启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
在一实施例中,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
其中,实际应用时,与小区重选信息中启动测量门限类似的,所述测量配置信息中的启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
实际应用时,小区重选信息是用于在空闲态或去激活态下终端进行小区重选,测量配置信息用于在连接态终端进行测量。
实际应用时,所述第一信息可以携带在系统消息中发送给所述终端。
对应地,本申请实施例还提供了一种信息配置方法,应用于终端,如图3所示,包括以下步骤:
步骤301:接收网络侧发送的第一信息;
其中,所述第一信息包含至少一个配置信息及每个配置信息对应的配 置信息标识。
步骤302:确定网络侧为自身配置的配置信息对应的波束;
步骤303:获得与确定的波束对应的配置信息标识;
步骤304:将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为自身配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
这里,实际应用时,所述终端可以从信号强度最大的SSB上接收系统消息。
基于此,在一实施例中,步骤302的具体实现可以包括:
所述终端将信号质量最高的波束作为确定的波束。
实际应用时,所述终端还可以从驻留的波束上接收系统消息。
基于此,在一实施例中,步骤302的具体实现可以包括:
所述终端将自身驻留的波束作为确定的波束。
基于上述网络设备和终端的操作,本申请实施例提供一种信息配置方法,如图4所示,该方法包括:
步骤401:网络设备向终端发送第一信息;
这里,所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
步骤402:终端接收网络设备发送的第一信息;
步骤403:所述终端确定网络侧为自身配置的配置信息对应的波束;并获得与确定的波束对应的配置信息标识;
步骤404:所述终端将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为自身配置的配置信息。
需要说明的是:网络设备和终端的具体处理过程已在上文详述,这里 不再赘述。
针对上述实施例的方案,举个例子来说,网络设备发送的第一信息中,包含8个SSB ID以及8组小区重选信息。SSB ID与小区重选信息一一对应。对于终端,终端接收第一信息后,终端当前最强的波束是SSB ID=3,则终端使用与SSB ID=3相对应的小区重选信息,用于小区重选,该重选信息中包含邻区列表,终端使用该邻区列表作小区重选。终端更换波束时不需要重新接收重选信息或测量配置,只需要用与新波束相对应的小区重选信息用于小区重选即可。
在上述实施例中,网络设备向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;而终端确定网络侧为自身配置的配置信息对应的波束;并获得与确定的波束对应的配置信息标识;所述终端将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为自身配置的配置信息,由于终端只将与确定的波束对应的配置信息标识对应的配置信息作为自身使用的配置信息,所以终端就只进行为自身配置的配置信息对应的测量,也就是说,网络侧选择性地配置终端只进行部分邻区的测量,如此,大大降低了终端的功耗;同时,还大大降低了测量时长。
实际应用时,还可以基于终端的位置来选择性地配置终端只测量部分邻区或部分异频频点。可以有以下两种实现方式:
第一种实现方式,基于终端的高度来选择性地配置终端只测量部分邻区或部分异频频点;
第二种实现方式,基于方向角来选择性的配置终端只测量部分邻区或部分异频频点。
下面详细描述上述两种实现方式。
对于第一种实现方式,本申请实施例提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,实际应用时,所述网络设备可以是基站,比如5G系统中的gNB等。
实际应用时,所述第一参数可以是海拔高度,还可以是气压值等。每个海拔高度或每个气压值可以配置一个对应的配置信息。
在一实施例中,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
这里,实际应用时,所述启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
在一实施例中,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
其中,实际应用时,与小区重选信息中启动测量门限类似的,所述测量配置信息中的启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异 频邻区的测量。
实际应用时,小区重选信息是用于在空闲态或去激活态下终端进行小区重选,测量配置信息用于在连接态终端进行测量。
实际应用时,所述第二信息可以携带在系统消息中发送给所述终端。
对应地,本申请实施例还提供了一种信息配置方法,应用于终端,如图5所示,包括以下步骤:
步骤501:接收网络侧发送的第二信息;
这里,所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
步骤502:将所述第二信息中与自身的高度相匹配的配置信息作为网络侧为自身配置的配置信息。
实际应用时,所述终端确定网络侧为自身配置的配置信息时,需要确定自身的高度。
基于此,在一实施例中,所述方法还可以包括:
确定自身的高度。
这里,实际应用时,所述终端上可以设置有高度计或气压计,所述终端可以利用高度计或气压计,来获得自身的高度。
在步骤502中,所述终端在确定所述第二信息中与自身的高度相匹配的配置信息时,可以将自身的高度与配置信息对应的高度信息进行匹配。实际应用时,所述配置信息对应的高度信息可以是一个高度范围,所述终端将自身的高度所在高度范围对应的配置信息作为与自身高度相匹配的配置信息;所述配置信息对应的高度信息也可以是一个高度门限,所述终端将自身的高度与对应高度门限进行比较,将自身高度大于或等于的高度门限(所述第二信息中小于或等于所述终端高度的所有高度门限中的最大值)对应的配置信息作为与自身高度相匹配的配置信息。
基于上述网络设备和终端的操作,本申请实施例提供一种信息配置方 法,如图6所示,该方法包括:
步骤601:网络设备向终端发送第二信息;
这里,所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
步骤602:终端接收网络设备发送的第二信息;并将所述第二信息中与自身的高度相匹配的配置信息作为网络侧为自身配置的配置信息。
需要说明的是:网络设备和终端的具体处理过程已在上文详述,这里不再赘述。
在上述实施例中,网络设备向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;终端接收网络设备发送的第二信息;将所述第二信息中与自身的高度相匹配的配置信息作为网络侧为自身配置的配置信息,由于终端只将与自身高度相匹配的配置信息作为自身使用的配置信息,所以终端就只进行为自身配置的配置信息对应的测量,也就是说,网络侧选择性地配置终端只进行部分邻区的测量,如此,大大降低了终端的功耗;同时,还大大降低了测量时长。
对于第二种实现方式,本申请实施例提供了一种信息配置方法,应用于网络设备,包括:
向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,实际应用时,所述网络设备可以是基站,比如5G系统中的gNB 等。
所述方向角度是指终端在网络设备坐标系中的角度,例如终端在网络设备东侧,则方向角度是90°,如果终端在网络设备南侧,则方向角度是180°。实际应用时,每个方向角度可以配置一个对应的配置信息。
在一实施例中,所述小区重选信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
这里,实际应用时,所述启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
在一实施例中,所述测量配置信息包括以下信息至少之一:
邻小区列表;
邻频列表;
启动测量门限。
其中,实际应用时,与小区重选信息中启动测量门限类似的,所述测量配置信息中的启动测量门限可以包含同频测量启动测量门限(可以表达为SintrasearchP)和异频测量启动测量门限(可以表达为SnonintrasearchP)中至少之一。
其中,当服务小区的测量值(比如小区选择接收电平值(可以表达为Srxlev))低于同频测量启动测量门限时,所述终端启动同频邻区的测量。
当服务小区的测量值低于异频测量启动测量门限时,所述终端启动异频邻区的测量。
实际应用时,小区重选信息是用于在空闲态或去激活态下终端进行小区重选,测量配置信息用于在连接态终端进行测量。
实际应用时,所述第三信息可以携带在系统消息中发送给所述终端。
对应地,本申请实施例还提供了一种信息配置方法,应用于终端,如图7所示,包括以下步骤:
步骤701:接收网络侧发送的第三信息;
这里,所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度。
步骤702:将所述第三信息中与自身位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为自身配置的配置信息。
其中,所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
实际应用时,所述终端确定网络侧为自身配置的配置信息时,需要确定自身相对于网络设备的方向角度。
基于此,在一实施例中,所述方法还可以包括:
确定自身位置相对于网络设备的方向角度。
这里,实际应用时,所述终端可以设置传感器,根据传感器确定自身相对于网络设备的方向角度。比如,根据罗盘和陀螺仪中至少之一,确定自身方向角度。终端还可以根据接收的无线信号确定方向角度,例如基站固定使用波束1射向北方,波束2射向东方,以此类推,终端根据收到的若干个波束的信号强度,判断终端相对于网络设备的方向角度。
在步骤702中,所述终端在确定所述第三信息中与自身位置相对于网络设备的方向角度向匹配的配置信息时,可以将自身相对于网络设备的方向角度与配置信息对应的方向角度信息进行匹配。实际应用时,所述配置信息对应的方向角度可以是一个方向角度范围,所述终端将自身位置相对于网络设备的方向角度所在方向角度范围对应的配置信息作为与自身位置相对于网络设备的方向角度相匹配的配置信息。
基于上述网络设备和终端的操作,本申请实施例提供一种信息配置方法,如图8所示,该方法包括:
步骤801:网络设备向终端发送第三信息;
这里,所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
步骤802:终端接收网络设备发送的第三信息;并将所述第三信息中与自身位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为自身配置的配置信息。
需要说明的是:网络设备和终端的具体处理过程已在上文详述,这里不再赘述。
在上述实施例中,网络设备向终端发送第三信息;这里,所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;终端接收网络设备发送的第三信息;将所述第三信息中与自身位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为自身配置的配置信息,由于终端只将与自身位置相对于网络设备的方向角度相匹配的配置信息作为自身使用的配置信息,所以终端就只进行为自身配置的配置信息对应的测量,也就是说,网络侧选择性地配置终端只进行部分邻区的测量,如此,大大降低了终端的功耗;同时,还大大降低了测量时长。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在网络设备上,包括:
第一配置单元,配置为在每个波束上发送与波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,在一实施例中,所述第一配置单元,还配置为在每个波束上发 送与波束对应的配置信息时,在每个SSB的资源上发送与波束对应的配置信息;或者,在与SSB相关联的资源上发送与波束对应的配置信息。
实际应用时,所述第一配置单元可由信息配置装置中的处理器结合通信接口实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在终端上,如图9所示,该装置包括:
第一确定单元91,配置为确定接收配置信息的波束;
第一接收单元92,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
在一实施例中,所述第一确定单元91,配置为:
将信号质量最高的波束作为接收配置信息的波束;
或者,
将终端自身驻留的波束作为接收配置信息的波束。
在一实施例中,所述第一接收单元92,配置为:在确定的波束上接收与确定的波束对应的配置信息时,在SSB的资源上或在每个信道状态信息参考信号CSI-RS的资源上接收与确定的波束对应的配置信息;或者,在与SSB相关联的资源上或在与CSI-RS相关联的资源上接收与确定的波束对应的配置信息。
实际应用时,所述第一确定单元91可由信息配置装置中的处理器实现;所述第一接收单元92可由信息配置装置中的通信接口实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在网络设备上,包括:
第二配置单元,配置为向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
实际应用时,所述第二配置单元可由信息配置装置中的处理器结合通信接口实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在终端上,如图10所示,该装置包括:
第二接收单元101,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;
第二确定单元102,配置为确定网络侧为终端配置的配置信息对应的波束;
第一处理单元103,配置为获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,在一实施例中,所述第二确定单元102,配置为:
将信号质量最高的波束作为确定的波束;
或者,
将终端自身驻留的波束作为确定的波束。
实际应用时,所述第二接收单元102可由信息配置装置中的通信接口实现;第二确定单元102及第一处理单元103可由信息配置装置中的处理器实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在网络设备上,包括:
第三配置单元,配置为向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
实际应用时,所述第三配置单元可由信息配置装置中的处理器结合通信接口实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在终端上,如图11所示,该装置包括:
第三接收单元111,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;
第二处理单元112,配置为将所述第二信息中与终端的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,在一实施例中,该装置还可以包括:第三确定单元,配置为确定终端自身的高度。
实际应用时,所述第三接收单元111可由信息配置装置中的通信接口实现;第三确定单元及第二处理单元112可由信息配置装置中的处理器实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置装置,设置在网络设备上,包括:
第四配置单元,配置为向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
实际应用时,所述第四配置单元可由信息配置装置中的处理器结合通信接口实现。
为了实现本申请实施例的方法,本申请实施例还提供了一种信息配置 装置,设置在终端上,如图12所示,该装置包括:
第四接收单元121,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;
第三处理单元122,配置为将所述第三信息中与终端位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
所述配置信息包含以下至少之一:
小区重选信息;
测量配置信息。
其中,在一实施例中,该装置还可以包括:第四确定单元,配置为确定终端自身位置相对于网络设备的方向角度。
实际应用时,所述第四接收单元121可由信息配置装置中的通信接口实现;第四确定单元及第三处理单元122可由信息配置装置中的处理器实现。
需要说明的是:上述实施例提供的信息配置装置在进行信息配置时,仅以上述各程序模块的划分进行举例说明,实际应用中,可以根据需要而将上述处理分配由不同的程序模块完成,即将装置的内部结构划分成不同的程序模块,以完成以上描述的全部或者部分处理。另外,上述实施例提供的信息配置装置与信息配置方法实施例属于同一构思,其具体实现过程详见方法实施例,这里不再赘述。
基于上述程序模块的硬件实现,且为了实现本申请实施例网络设备侧的方法,本申请实施例提供了一种网络设备,如图13所示,该网络设备130包括:
第一通信接口131,能够与终端进行信息交互;
第一处理器132,与所述第一通信接口131连接,以实现与终端进行信息交互,配置为运行计算机程序时,执行上述网络设备侧一个或多个技术方案提供的方法。而所述计算机程序存储在第一存储器133上。
具体地,在网络侧直接在每个波束发送对应的配置信息,终端选择性 地接收对应的配置信息的情况下,所述第一处理器132,配置为通过所述第一通信接口131在每个波束上发送与波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
其中,在一实施例中,所述第一处理器132,配置为通过所述第一通信接口131在每个波束上发送与波束对应的配置信息时,
在每个SSB的资源上或在每个CSI-RS的资源上发送与波束对应的配置信息;
或者,
在与SSB相关联的资源上或在与CSI-RS相关联的资源上发送与波束对应的配置信息。
在网络侧向终端发送波束与配置信息的对应关系,终端选择性地接收对应的配置信息的情况下,所述第一处理器132,配置为通过所述第一通信接口131向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
在基于终端的高度来选择性地配置终端只测量部分邻区或部分异频频点的情况下,所述第一处理器132,配置为通过所述第一通信接口131向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
在基于方向角来选择性的配置终端只测量部分邻区或部分异频频点的情况下,所述第一处理器132,配置为通过所述第一通信接口131向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
需要说明的是:所述第一处理器132和第一通信接口131的具体处理过程详见方法实施例,这里不再赘述。
当然,实际应用时,网络设备130中的各个组件通过总线系统134耦合在一起。可理解,总线系统134配置为实现这些组件之间的连接通信。 总线系统134除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。但是为了清楚说明起见,在图13中将各种总线都标为总线系统134。
本申请实施例中的第一存储器133配置为存储各种类型的数据以支持网络设备130的操作。这些数据的示例包括:用于在网络设备130上操作的任何计算机程序。
上述本申请实施例揭示的方法可以应用于所述第一处理器132中,或者由所述第一处理器132实现。所述第一处理器132可能是一种集成电路芯片,具有信号的处理能力。在实现过程中,上述方法的各步骤可以通过所述第一处理器132中的硬件的集成逻辑电路或者软件形式的指令完成。上述的所述第一处理器132可以是通用处理器、数字信号处理器(DSP,Digital Signal Processor),或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。所述第一处理器132可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者任何常规的处理器等。结合本申请实施例所公开的方法的步骤,可以直接体现为硬件译码处理器执行完成,或者用译码处理器中的硬件及软件模块组合执行完成。软件模块可以位于存储介质中,该存储介质位于第一存储器133,所述第一处理器132读取第一存储器133中的信息,结合其硬件完成前述方法的步骤。
在示例性实施例中,网络设备130可以被一个或多个应用专用集成电路(ASIC,Application Specific Integrated Circuit)、DSP、可编程逻辑器件(PLD,Programmable Logic Device)、复杂可编程逻辑器件(CPLD,Complex Programmable Logic Device)、现场可编程门阵列(FPGA,Field-Programmable Gate Array)、通用处理器、控制器、微控制器(MCU,Micro Controller Unit)、微处理器(Microprocessor)、或者其他电子元件实现,配置为执行前述方法。
基于上述程序模块的硬件实现,且为了实现本申请实施例终端侧的方法,如图14所示,该终端140包括:
第二通信接口141,能够与网络设备进行信息交互;
第二处理器142,与所述第二通信接口141连接,以实现与网络设备进行信息交互,配置为运行计算机程序时,执行上述终端侧一个或多个技术 方案提供的方法。而所述计算机程序存储在第二存储器143上。
具体地,在网络侧直接在每个波束发送对应的配置信息,终端选择性地接收对应的配置信息的情况下,所述第二处理器142,配置为确定接收配置信息的波束;所述第二通信接口141,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
其中,在一实施例中,所述第二通信接口141,配置为:在确定的波束上接收与确定的波束对应的配置信息时,在SSB的资源上或在CSI-RS的资源上接收与确定的波束对应的配置信息;或者,在与SSB相关联的资源上或在与CSI-RS相关联的资源上接收与确定的波束对应的配置信息。
在网络侧向终端发送波束与配置信息的对应关系,终端选择性地接收对应的配置信息的情况下,所述第二通信接口141,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;所述第二处理器142,配置为确定网络侧为自身配置的配置信息对应的波束;并获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
其中,在一实施例中,所述第二处理器142,配置为:
将信号质量最高的波束作为确定的波束;
或者,
将终端自身驻留的波束作为确定的波束。
在基于终端的高度来选择性地配置终端只测量部分邻区或部分异频频点的情况下,所述第二通信接口141,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;所述第二处理器142,配置为将所述第二信息中与所述终端自身的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
其中,在一实施例中,所述第二处理器142,还配置为确定终端自身的高度。
在基于方向角来选择性的配置终端只测量部分邻区或部分异频频点的情况下,所述第二通信接口,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;所述第二处理器,配置为将所述第三信息中与终端位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
其中,在一实施例中,所述第二处理器142,还配置为确定终端自身位置相对于网络设备的方向角度。
需要说明的是:所述第二处理器142和第二通信接口141的具体处理过程详见方法实施例,这里不再赘述。
当然,实际应用时,终端140中的各个组件通过总线系统144耦合在一起。可理解,总线系统144配置为实现这些组件之间的连接通信。总线系统144除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。但是为了清楚说明起见,在图14中将各种总线都标为总线系统144。
本申请实施例中的第二存储器143配置为存储各种类型的数据以支持终端140操作。这些数据的示例包括:用于在终端140上操作的任何计算机程序。
上述本申请实施例揭示的方法可以应用于所述第二处理器142中,或者由所述第二处理器142实现。所述第二处理器142可能是一种集成电路芯片,具有信号的处理能力。在实现过程中,上述方法的各步骤可以通过所述第二处理器142中的硬件的集成逻辑电路或者软件形式的指令完成。上述的所述第二处理器142可以是通用处理器、DSP,或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。所述第二处理器142可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者任何常规的处理器等。结合本申请实施例所公开的方法的步骤,可以直接体现为硬件译码处理器执行完成,或者用译 码处理器中的硬件及软件模块组合执行完成。软件模块可以位于存储介质中,该存储介质位于第二存储器143,所述第二处理器142读取第二存储器143中的信息,结合其硬件完成前述方法的步骤。
在示例性实施例中终端140可以被一个或多个ASIC、DSP、PLD、CPLD、FPGA、通用处理器、控制器、MCU、Microprocessor、或其他电子元件实现,配置为执行前述方法。
可以理解,本申请实施例的存储器(第一存储器133、第二存储器143)可以是易失性存储器或者非易失性存储器,也可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(ROM,Read Only Memory)、可编程只读存储器(PROM,Programmable Read-Only Memory)、可擦除可编程只读存储器(EPROM,Erasable Programmable Read-Only Memory)、电可擦除可编程只读存储器(EEPROM,Electrically Erasable Programmable Read-Only Memory)、磁性随机存取存储器(FRAM,ferromagnetic random access memory)、快闪存储器(Flash Memory)、磁表面存储器、光盘、或只读光盘(CD-ROM,Compact Disc Read-Only Memory);磁表面存储器可以是磁盘存储器或磁带存储器。易失性存储器可以是随机存取存储器(RAM,Random Access Memory),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(SRAM,Static Random Access Memory)、同步静态随机存取存储器(SSRAM,Synchronous Static Random Access Memory)、动态随机存取存储器(DRAM,Dynamic Random Access Memory)、同步动态随机存取存储器(SDRAM,Synchronous Dynamic Random Access Memory)、双倍数据速率同步动态随机存取存储器(DDRSDRAM,Double Data Rate Synchronous Dynamic Random Access Memory)、增强型同步动态随机存取存储器(ESDRAM,Enhanced Synchronous Dynamic Random Access Memory)、同步连接动态随机存取存储器(SLDRAM,SyncLink Dynamic Random Access Memory)、直接内存总线随机存取存储器(DRRAM,Direct Rambus Random Access Memory)。本申请实施例描述的存储器旨在包括但不限于这些和任意其它适合类型的存储器。
为实现本申请实施例的方法,本申请实施例还提供了一种信息传输系统,如图15所示,该系统包括:网络设备151及终端152。
需要说明的是:网络设备151和终端152的具体处理过程已在上文详述,这里不再赘述。
在示例性实施例中,本申请实施例还提供了一种存储介质,即计算机存储介质,具体为计算机可读存储介质,例如包括存储计算机程序的第一存储器133,上述计算机程序可由网络设备130的第一处理器132执行,以完成前述网络设备侧方法所述步骤。再比如包括存储计算机程序的第二存储器143,上述计算机程序可由终端140的第二处理器142执行,以完成前述终端侧方法所述步骤。计算机可读存储介质可以是FRAM、ROM、PROM、EPROM、EEPROM、Flash Memory、磁表面存储器、光盘、或CD-ROM等存储器。
需要说明的是:“第一”、“第二”等是配区别类似的对象,而不必用于描述特定的顺序或先后次序。
另外,本申请实施例所记载的技术方案之间,在不冲突的情况下,可以任意组合。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。

Claims (45)

  1. 一种信息配置方法,应用于网络设备,包括:
    在每个波束上发送与波束对应的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  2. 根据权利要求1所述的方法,其中,在每个波束上发送与波束对应的配置信息时,所述方法包括:
    在每个同步信号/物理广播信道块SSB的资源上或在每个信道状态信息参考信号CSI-RS的资源上发送与波束对应的配置信息;
    或者,
    在与SSB相关联的资源上或在与CSI-RS相关联的资源上发送与波束对应的配置信息。
  3. 根据权利要求1所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  4. 根据权利要求1所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  5. 一种信息配置方法,应用于终端,包括:
    确定接收配置信息的波束;
    在确定的波束上接收与确定的波束对应的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  6. 根据权利要求5所述的方法,其中,所述确定接收配置信息的波束,包括:
    将信号质量最高的波束作为接收配置信息的波束;
    或者,
    将自身驻留的波束作为接收配置信息的波束。
  7. 根据权利要求5所述的方法,其中,所述在确定的波束上接收与确定的波束对应的配置信息时,所述方法包括:
    在SSB的资源上或在CSI-RS的资源上接收与确定的波束对应的配置信息;
    或者,
    在与SSB相关联的资源上或在与CSI-RS相关联的资源上接收与确定的波束对应的配置信息。
  8. 根据权利要求5所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  9. 根据权利要求5所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  10. 一种信息配置方法,应用于网络设备,包括:
    向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  11. 根据权利要求10所述的方法,其中,所述配置信息标识为以下之一:
    SSB标识;
    CSI-RS标识;
    波束标识。
  12. 根据权利要求10所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  13. 根据权利要求10所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  14. 一种信息配置方法,应用于终端,包括:
    接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;
    确定网络侧为自身配置的配置信息对应的波束;
    获得与确定的波束对应的配置信息标识;
    将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为自身配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  15. 根据权利要求14所述的方法,其中,所述确定网络侧为自身配置的配置信息对应的波束,包括:
    将信号质量最高的波束作为确定的波束;
    或者,
    将自身驻留的波束作为确定的波束。
  16. 根据权利要求14所述的方法,其中,所述配置信息标识为以下之一:
    SSB标识;
    CSI-RS标识;
    波束标识。
  17. 根据权利要求14所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  18. 根据权利要求14所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  19. 一种信息配置方法,应用于网络设备,包括:
    向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  20. 根据权利要求19所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  21. 根据权利要求19所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  22. 一种信息配置方法,应用于终端,包括:
    接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;
    将所述第二信息中与自身的高度相匹配的配置信息作为网络侧为自身配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  23. 根据权利要求22所述的方法,其中,所述方法还包括:
    确定自身的高度。
  24. 根据权利要求22所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  25. 根据权利要求22所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  26. 一种信息配置方法,应用于网络设备,包括:
    向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  27. 根据权利要求26所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  28. 根据权利要求26所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  29. 一种信息配置方法,应用于终端,包括:
    接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;
    将所述第三信息中与自身位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为自身配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  30. 根据权利要求29所述的方法,其中,所述方法还包括:
    确定自身位置相对于网络设备的方向角度。
  31. 根据权利要求29所述的方法,其中,所述小区重选信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  32. 根据权利要求29所述的方法,其中,所述测量配置信息包括以下信息至少之一:
    邻小区列表;
    邻频列表;
    启动测量门限。
  33. 一种信息配置装置,包括:
    第一配置单元,配置为在每个波束上发送与波束对应的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  34. 一种信息配置装置,包括:
    第一确定单元,配置为确定接收配置信息的波束;
    第一接收单元,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  35. 一种信息配置装置,包括:
    第二配置单元,配置为向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  36. 一种信息配置装置,包括:
    第二接收单元,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;
    第二确定单元,配置为确定网络侧为终端配置的配置信息对应的波束;
    第一处理单元,配置为获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  37. 一种信息配置装置,包括:
    第三配置单元,配置为向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  38. 一种信息配置装置,包括:
    第三接收单元,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;
    第二处理单元,配置为将所述第二信息中与终端的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  39. 一种信息配置装置,包括:
    第四配置单元,配置为向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  40. 一种信息配置装置,包括:
    第四接收单元,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征 终端位置相对于网络设备的方向角度;
    第三处理单元,配置为将所述第三信息中与终端位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,
    所述配置信息包含以下至少之一:
    小区重选信息;
    测量配置信息。
  41. 一种网络设备,包括:第一处理器及第一通信接口;其中,
    所述第一处理器,配置为通过所述第一通信接口在每个波束上发送与波束对应的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第一处理器,配置为通过所述第一通信接口向终端发送第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第一处理器,配置为通过所述第一通信接口向终端发送第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第一处理器,配置为通过所述第一通信接口向终端发送第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
  42. 一种终端,包括:第二处理器及第二通信接口;其中,
    所述第二处理器,配置为确定接收配置信息的波束;所述第二通信接口,配置为在确定的波束上接收与确定的波束对应的配置信息;其中,所 述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第二通信接口,配置为接收网络侧发送的第一信息;所述第一信息包含至少一个配置信息及每个配置信息对应的配置信息标识;所述第二处理器,配置为确定网络侧为终端自身配置的配置信息对应的波束;并获得与确定的波束对应的配置信息标识;并将所述第一信息中与获得的配置信息标识对应的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第二通信接口,配置为接收网络侧发送的第二信息;所述第二信息包含至少一个配置信息及每个配置信息对应的第一参数;所述第一参数表征终端的高度;所述第二处理器,配置为将所述第二信息中与所述终端自身的高度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息;
    或者,
    所述第二通信接口,配置为接收网络侧发送的第三信息;所述第三信息包含至少一个配置信息及每个配置信息对应的第二参数;所述第二参数表征终端位置相对于网络设备的方向角度;所述第二处理器,配置为将所述第三信息中与终端位置相对于网络设备的方向角度相匹配的配置信息作为网络侧为所述终端配置的配置信息;其中,所述配置信息包含以下至少之一:小区重选信息;测量配置信息。
  43. 一种网络设备,包括:第一处理器和配置为存储能够在处理器上运行的计算机程序的第一存储器,
    其中,所述第一处理器配置为运行所述计算机程序时,执行权利要求1至4任一项所述方法的步骤,或者执行权利要求10至13任一项所述方法的步骤,或者执行权利要求19至21任一项所述方法的步骤,或者执行权利要求26至28任一项所述方法的步骤。
  44. 一种终端,包括:第二处理器和配置为存储能够在处理器上运行的计算机程序的第二存储器,
    其中,所述第二处理器配置为运行所述计算机程序时,执行权利要求5至9任一项所述方法的步骤,或者执行权利要求14至18任一项所述方法的步骤,或者执行权利要求22至25任一项所述方法的步骤,或者执行权利要求29至32任一项所述方法的步骤。
  45. 一种存储介质,其上存储有计算机程序,其中,所述计算机程序被处理器执行时实现权利要求1至4任一项所述方法的步骤,或者实现权利要求5至9任一项所述方法的步骤,或者实现权利要求10至13任一项所述方法的步骤,或者实现权利要求14至18任一项所述方法的步骤,或者实现权利要求19至21任一项所述方法的步骤,或者实现权利要求22至25任一项所述方法的步骤,或者实现权利要求26至28任一项所述方法的步骤,或者实现权利要求29至32任一项所述方法的步骤。
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