WO2011085678A1 - 定时提前分组的确定方法、设备及系统 - Google Patents
定时提前分组的确定方法、设备及系统 Download PDFInfo
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- WO2011085678A1 WO2011085678A1 PCT/CN2011/070199 CN2011070199W WO2011085678A1 WO 2011085678 A1 WO2011085678 A1 WO 2011085678A1 CN 2011070199 W CN2011070199 W CN 2011070199W WO 2011085678 A1 WO2011085678 A1 WO 2011085678A1
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- 238000000034 method Methods 0.000 title claims abstract description 117
- 230000006854 communication Effects 0.000 claims abstract description 11
- 238000004891 communication Methods 0.000 claims abstract description 7
- 238000005259 measurement Methods 0.000 claims description 29
- 230000008569 process Effects 0.000 description 20
- 238000010586 diagram Methods 0.000 description 15
- 238000012545 processing Methods 0.000 description 8
- 230000005540 biological transmission Effects 0.000 description 6
- 238000012544 monitoring process Methods 0.000 description 6
- 230000008859 change Effects 0.000 description 4
- 230000009467 reduction Effects 0.000 description 3
- 230000006399 behavior Effects 0.000 description 2
- 230000004044 response Effects 0.000 description 2
- 230000001960 triggered effect Effects 0.000 description 2
- 230000002776 aggregation Effects 0.000 description 1
- 238000004220 aggregation Methods 0.000 description 1
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
- H04W56/004—Synchronisation arrangements compensating for timing error of reception due to propagation delay
- H04W56/0045—Synchronisation arrangements compensating for timing error of reception due to propagation delay compensating for timing error by altering transmission time
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/08—Non-scheduled access, e.g. ALOHA
- H04W74/0833—Random access procedures, e.g. with 4-step access
- H04W74/0841—Random access procedures, e.g. with 4-step access with collision treatment
- H04W74/085—Random access procedures, e.g. with 4-step access with collision treatment collision avoidance
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
- H04W56/0005—Synchronisation arrangements synchronizing of arrival of multiple uplinks
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0446—Resources in time domain, e.g. slots or frames
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/002—Transmission of channel access control information
- H04W74/006—Transmission of channel access control information in the downlink, i.e. towards the terminal
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/27—Transitions between radio resource control [RRC] states
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/08—Non-scheduled access, e.g. ALOHA
- H04W74/0833—Random access procedures, e.g. with 4-step access
Definitions
- the present invention relates to the field of communications, and in particular, to a technique for determining timing advance packets. Background technique
- the base station in the present application uses the evolved base station eNodeB as an example for description.
- the eNodeB adjusts its TA (Timing Advance) value according to the offset of the uplink signal.
- a UE can communicate with an eNodeB through multiple CCs (Component Carriers) on the uplink and downlink. If for one UE, the eNodeB considers that these CCs can share a TA value, that is, the eNodeB adjusts the TA value by referring to any one of the uplink transmission signals of the CCs, and the TA value can be used by the CCs, and the CCs are considered to belong to a TA group. .
- CCs Component Carriers
- a frequency selective repeater ( Repeater)
- another one or several CCs are not amplified by the repeater or passed through the signal.
- the frequency selective repeater of another frequency performs signal amplification, and when the UE falls into one of the repeaters or falls within the coverage of the two repeaters, the TA values of the CCs cannot be shared, that is, they are not the same. TA group. If these CCs are not amplified by the repeater or amplified by the frequency selective repeater of the same frequency, it can be considered that these CCs can share the same TA value, that is, belong to the same TA group.
- the resource control connection reconfiguration message adds one or more CCs to the UE, and provides related attribute information of the CC in the message.
- RRC Radio Resource Control, wireless
- the resource control connection reconfiguration message adds one or more CCs to the UE, and provides related attribute information of the CC in the message.
- the eNodeB decides to add one or more CCs to the UE, it is required to perform a random access procedure on the CC every time the CC is added, so as to determine whether the TA value can be shared with at least one CC currently communicating. .
- the method, device and system for determining a timing advance packet provided by the present invention can reduce the number of random accesses, and P strives for a low probability of collision in a random access procedure.
- An aspect of the present invention provides a method for determining a timing advance packet, including: a base station eNodeB adds a carrier component CC to a user equipment UE; and determines a TA group to which the added CC belongs according to the acquired timing advance TA group information or a preset rule.
- the TA group is a set of CCs that can share one TA; and the identifier information that identifies the TA group is sent to the UE. .
- the present invention provides a base station device, including: an adding unit, configured to add a carrier component CC to the user equipment UE, and a determining unit, configured to: when the adding unit adds a CC to the UE, according to the acquired timing advance
- the TA group information or the preset rule, the TA group to which the added CC belongs is determined, the TA group is a set of CCs that can share one TA, and the sending unit is configured to send identifier information that identifies the TA group to The UE.
- a further aspect of the present invention provides a user equipment, including: a receiving unit, configured to receive information about a TA sent by an eNodeB for querying a CC; and receive information about a TA of the CC that is sent by the network management center by using data plane data; The identifier information of the TA group sent by the eNodeB; and the sending unit, configured to send the query result to the eNodeB; and send the query result to the network management center by using the data bearer.
- a further aspect of the present invention provides a network management center device, including: a sending unit, configured to send, by using data plane data, TA information for querying a CC to a UE; and send, to the eNodeB, TA group information; and a receiving unit, configured to receive, by the UE, And the grouping unit is configured to perform a TA component group according to the query result, where the TA is at a third threshold
- the CCs within the range defined by the fourth cabinet value are divided into one TA group.
- a still further aspect of the present invention provides a communication system, including: at least one of the foregoing base station device, user equipment, and network management center device.
- the eNodeB adds a CC to the UE, and can determine the TA group to which the newly added CC belongs according to the obtained TA group information or a preset rule, thereby avoiding the present
- the eNodeB frequently triggers the random access procedure due to the uncertainty of the TA group of the newly added CC. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- FIG. 1 is a block diagram of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 2 is a schematic diagram 1 of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 3 is a timing advance grouping according to an embodiment of the present invention
- FIG. 4 is a schematic diagram 3 of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 5 is a schematic diagram 4 of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 7 is a schematic diagram 6 of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 8 is a schematic diagram of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 9 is a schematic diagram of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 10 is a schematic diagram nin of a method for determining a timing advance packet according to an embodiment of the present invention
- FIG. 11 is an extended TA according to an embodiment of the present invention
- FIG. 12 is a diagram of a base station device according to an embodiment of the present invention; A block diagram;
- FIG. 13 is a structural block diagram 2 of a base station device according to an embodiment of the present disclosure
- FIG. 14 is a structural block diagram 1 of a user equipment according to an embodiment of the present invention
- FIG. 15 is a structural block diagram 2 of a user equipment according to an embodiment of the present invention
- FIG. 16 is a structural block diagram of a network management center device according to an embodiment of the present invention. detailed description
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 1, includes the following content.
- the base station eNodeB adds a carrier component CC to the user equipment UE.
- the eNodeB can obtain the TA group information through the UE or the network management center, and can also determine the TA group according to preset rules such as a corresponding band and a repeater.
- the eNodeB can determine the TA group to which the newly added CC belongs according to the acquired TA group information or the preset rule, thereby avoiding the prior art.
- the eNodeB frequently triggers the random access procedure due to the uncertainty of the TA group of the newly added CC, reduces the use of random access resources, reduces the collision probability of the random access procedure, and improves system performance.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 2, includes the following content.
- the eNodeB adds an uplink carrier CC to the UE, and the eNodeB determines whether the newly added CC is The CC that is currently configured with the eNodeB belongs to the same band (Band); if it belongs to the same band, it is determined that the added CC belongs to the TA group corresponding to the band, and the TA group identifier is assigned to the CC; otherwise, The newly added CC newly assigns a TA group identifier.
- the TA group is a set of CCs that can share one TA.
- the TA group identifier referred to herein is the identifier information used to identify the TA group, and may be a displayed TA group number, or a specific CC number in the TA group, and the like.
- the eNodeB can obtain the configuration attribute information of its subordinate repeater (Repeater), it can also refer to the information to determine the TA group:
- the eNodeB performs TA group judgment based on the attributes of the repeater. For example: If the eNodeB knows that its subordinate repeater only amplifies band 1, it can be considered that the CC under band 1 can share a TA value, belonging to one TA group, and the other CCs in the band without the repeater belong to one. TA group; if the eNodeB knows that its subordinate repeater 1 amplifies band 1 and repeater 2 amplifies band 2, it considers that band 1 and band 2 are each a TA group, and other bands without a repeater are configured.
- the CC belongs to a TA group; if the eNodeB knows that its subordinate repeater is amplifying both the band 1 and the band 2, it is considered that the band 1 and the band 2 belong to one TA group, and the other CCs in the band without the repeater belong to one TA group.
- the TA group judgment can also be performed according to the processing delay. For example: If the processing delay of the repeater is less than a certain threshold, it can be considered that the relay can share a TA value with the CC that has not passed through the repeater. Otherwise, all CCs can be considered to belong to a TA group, and the same new TA group identifier is assigned.
- the information of the processing delay of the above repeater is optionally applied to the above-described TA group determining method.
- the CC may be determined according to the granularity, that is, each CC belongs to one TA group; and when referring to the relay attribute information, the CC is also used as the granularity. For example: If the eNodeB knows that its subordinate repeater only amplifies CC1, it can be considered CC1 belongs to a TA group. Other CCs that do not have a repeater belong to a TA group. If the eNodeB knows that its subordinate repeater 1 amplifies CC1 and repeater 2 amplifies CC2, it considers CC1 and CC2 to be one TA.
- CCs without a repeater belong to a TA group; if the eNodeB knows that its subordinate repeaters simultaneously amplify CC1 and CC2, CC1 and CC2 belong to one TA group, and other CCs without a repeater belong to A TA group.
- the TA group judgment can also be performed according to the processing delay. For example: If the processing delay of the repeater is less than a certain threshold, it can be considered that the relay can share a TA value with the CC that has not passed through the repeater. Otherwise, all CCs can be considered to belong to a TA group, and the same new TA group identifier is assigned.
- the information of the processing delay of the above repeater is optionally applied to the above-described TA group determining method.
- the eNodeB sends the TA group identifier to the UE. Specifically, the eNodeB may send an RRC connection reconfiguration message to the UE, and send the TA group identifier to the UE as an attribute parameter of the CC in the RRC connection reconfiguration message.
- the eNodeB adds a CC to the UE, and can determine the TA group to which the newly added CC belongs according to the preset band judgment rule, thereby avoiding the eNodeB in the prior art.
- the TA group of the newly added CC is determined to frequently trigger the random access procedure, which reduces the use of random access resources, reduces the collision probability of the random access procedure, and improves system performance.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 3, includes the following content.
- the eNodeB triggers querying the TA configuration information of all CCs in the eNodeB as needed.
- the eNodeB triggering condition may be: an artificial trigger or an eNodeB according to detecting the uplink information of the UE in the coverage, such as a channel quality indicator (CQI), a sounding reference signal (SRS), etc.
- CQI channel quality indicator
- SRS sounding reference signal
- the TA information changes, such as the TA difference between two CCs exceeds a certain range.
- the TA query command should include CC information that is required to report to the TA.
- the eNodeB sends, to the UE, information for querying the TA of the CC.
- the information may be an RRC message, such as a UE information request message (UE Information Request), or may be a MAC CE (Medium Access Control Control Element).
- UE Information Request UE Information Request
- MAC CE Medium Access Control Control Element
- the message may be an explicit query command, such as requiring the UE to report the TA value of each CC, or an implicit query command, such as requiring the UE to initiate a random access procedure on each CC.
- the UE receives the TA query command, performs a query, and sends the query result to the eNodeB.
- the UE after receiving the TA query command sent by the eNodeB, the UE initiates a random access on the required CC, and selects a random access preamble (preamble) on each CC, and the eNodeB detects the random access preamble carried by the UE.
- the UE After the UE receives the eNodeB query command, the UE determines the TA of the different CC by detecting the DL reference signal, and then reports the TA to the eNodeB.
- the UE obtains the TA value of the different CCs through the random access procedure or the downlink detection, and then reports the query result to the eNodeB through an RRC message, such as a UE Information Response, or a MAC CE.
- RRC message such as a UE Information Response, or a MAC CE.
- the eNodeB performs a TA component group according to the query result reported by the UE.
- the eNodeB may consider that the CCs belong to one TA group, that is, the CCs in which the TA is within the first threshold and the second threshold. Can be divided into one TA group; otherwise, these CCs do not belong to A TA group.
- the eNodeB adds a CC to the UE, and determines the TA group identifier of the CC to be added according to the TA group information obtained in step S304, and sends the TA group identifier as an attribute parameter of the CC to the UE in the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group number or a specific CC number in the TA group.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the obtained TA group information, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added to trigger the random access procedure frequently, which reduces the use of random access resources, reduces the collision probability of the random access process, and improves system performance.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 4, includes the following content.
- the network management center sends, by using data plane data, the TA information of the query CC to the UE.
- the upper layer of the UE parses the data plane bearer.
- the lower layer (the MAC layer) of the UE after receiving the indication of the upper layer (application layer), the lower layer (the MAC layer) of the UE initiates random access on the required CC to obtain different TA values; or, after receiving the upper layer indication, the lower layer (physical layer) of the UE receives the upper layer indication.
- the UE determines the TA of different CCs by detecting the DL reference signal.
- the lower layer of the UE (the physical layer or the MAC layer) reports the collected TA information to the upper layer (application layer).
- the UE reports the query result to the network management center by using the data bearer.
- the network management center performs TA group according to the query result reported by the UE.
- the network management center may consider that the CCs belong to a TA group, that is, the TA is within the range defined by the third and fourth thresholds.
- the CCs are divided into one TA group; otherwise, these CCs are not considered to belong to one TA group.
- the network management center sends the TA group configuration information to the eNodeB, and the coverage area thereof is TA group information is sent to the eNodeB
- the eNodeB may send a TA configuration request message to the network management center to request the network management center to configure the TA group information.
- the name of the message mentioned here is only a name adopted for convenience of description. This name cannot limit the scope applicable to the embodiment of the present invention, that is, there may be no similar name in some systems, however, It is not considered that the technical solutions in the embodiments of the present invention are not applicable to these systems.
- the eNodeB adds a CC to the UE, and determines the TA group identifier of the CC to be added according to the TA packet information obtained in step S405, and sends the TA group identifier as an attribute parameter of the CC to the UE in the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group serial number, or may be a specific CC serial number in the TA group.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the obtained TA group information, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added to trigger the random access procedure frequently, which reduces the use of random access resources, reduces the collision probability of the random access process, and improves system performance.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 5, includes the following content.
- S501 The UE receives the system broadcast message, and obtains all CC configuration information of the eNodeB or the cell.
- the UE After the UE establishes a connection with the eNodeB, the UE receives the synchronization signals of the downlink CCs, and determines whether the corresponding uplink CCs can share the same TA adjustment value by determining the time offset between the downlink CC synchronizations.
- CCs that belong to the same band can be considered to share the same TA. Therefore, the UE selects one downlink CC from each of the different bands, and compares the two to perform the judgment of sharing the TA. Set.
- the UE may also monitor synchronization of all uplink CCs corresponding to downlink CCs, and compare them in pairs.
- the UE reports the measurement report, that is, the time offset between the downlink CC synchronizations to the eNodeB by using a synchronization report message.
- the synchronization report message specifically used by the UE may be a new information element of a new RRC message or an existing RRC message, or may be a new MAC CE.
- the name of the message is merely a name used for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but it cannot be considered as an embodiment of the present invention. The technical solution cannot be applied to these systems.
- the eNodeB adds a CC to the UE, and the eNodeB refers to the measurement report result of the UE, determines the TA group identifier of the newly added CC, and divides the CC whose synchronization time offset is within the range defined by the fifth threshold and the sixth threshold into one TA.
- the group, and the RRC connection reconfiguration message sends the TA group identifier as an attribute parameter of the CC to the UE.
- the TA group identifier referred to herein may be a displayed TA group serial number, or may be a specific CC serial number in the TA group.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the obtained measurement report related to the TA group information, thereby avoiding the prior art.
- the eNodeB frequently triggers the random access procedure due to the uncertainty of the TA group of the newly added CC, reduces the use of random access resources, reduces the collision probability of the random access procedure, and improves system performance.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 6, includes the following content.
- the eNodeB adds a CC to the UE, and the eNodeB first determines whether each added CC and the CC configured by the current UE of the eNodeB belong to the same TA group, and sends an RRC connection reconfiguration message to the UE.
- the CC and the current CC that belong to the same band can share the same TA, belong to a TA group, assign the TA group identifier to the CC, and use the RRC connection reconfiguration message to identify the TA group identifier as one of the CCs.
- the attribute parameters are sent to the UE.
- the TA group identifier referred to herein may be a displayed TA group serial number, or may be a specific CC serial number in the TA group.
- the eNodeB does not carry the TA group identifier corresponding to the CC in the RRC connection reconfiguration message.
- the eNodeB may allocate a Preamble or PRACH (Physical Random Access Channel) resource to the UE on the CC.
- PRACH Physical Random Access Channel
- the eNodeB may not determine whether the newly added CC and the currently configured CC belong to the same TA group, and the eNodeB does not carry the TA group identifier corresponding to the CC in the RRC connection reconfiguration message.
- the eNodeB may allocate a Preamble or PRACH (Physical Random Access Channel) resource for the UE on the CC.
- PRACH Physical Random Access Channel
- the UE After receiving the RRC connection reconfiguration message of the eNodeB, the UE determines whether the newly configured CC attribute information carries the TA group identifier.
- the identifier is stored as the configuration information of the CC. If the newly added CC does not carry the identifier, the UE determines whether the added CC belongs to the existing TA group according to the time offset between the downlink synchronization of the downlink CC corresponding to the newly added CC. Specifically, the UE may compare the time offset between the downlink CC corresponding to the new CC and the downlink synchronization of the downlink CC corresponding to any one of the currently existing TA groups, if the offset reaches one If the preset threshold is used, it is considered that the newly added CC does not belong to the TA group to which the compared CC belongs; otherwise, it belongs to the TA group.
- the UE initiates a random access procedure to the eNodeB on the newly added CC. Specifically, if the eNodeB allocates dedicated Preamble and PRACH resources to the CC, the UE performs non-contention random access; otherwise, performs competitive random access. If the newly added CC belongs to the current one of the TA groups, the UE sends the identification information of the added TA group to the eNodeB. Specifically, the eNB connection reconfiguration complete message may be used to notify the eNodeB of the TA group identifier of the newly added CC.
- the TA group identifier referred to herein may be a displayed TA group serial number, or may be A specific CC number in the TA group.
- the UE may also notify only the eNodeB that the CC may share the same TA value with the currently configured CC without reporting the group identifier to the eNodeB.
- the UE may report the information to the eNodeB by using another new RRC message or a new information element in the existing RRC message, or a new MAC CE.
- the name of the message is merely a name for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but the embodiment of the present invention cannot be considered as such. The technical solutions in this solution cannot be applied to these systems.
- the eNodeB performs a corresponding operation according to the received different information.
- the eNodeB when the eNodeB detects the random access procedure initiated by the UE on the corresponding CC, the eNodeB adjusts the TA value of the added CC by using a RAR (Random Access Response) message, and reconfigures the message through the RRC connection. Or a new MAC CE is assigned a corresponding new TA group identifier.
- RAR Random Access Response
- a new MAC CE is assigned a corresponding new TA group identifier.
- the TA group identifier referred to herein may be a displayed TA group sequence number, or may be a specific CC sequence number in the TA group.
- the name of the message mentioned herein is merely a name used for convenience of description, and this name is not limited to the scope applicable to the embodiment of the present invention, that is, there may be no similar name in some systems, but It is considered that the technical solutions in the embodiments of the present invention are not applicable to these systems.
- the TA group identifier corresponding to the CC is stored.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the learned TA group information, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added to frequently trigger the random access procedure; when the eNodeB cannot determine the TA packet, the UE may also assist in determining the TA packet. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 7, includes the following content.
- the eNodeB adds a CC to the UE, and the eNodeB first determines whether the added CC and the CC configured by the current UE of the eNodeB belong to the same TA group, and sends an RRC connection reconfiguration message to the UE.
- the CC and the CC that belong to the same band can be shared by the same TA, and belong to a TA group. Assigned to the CC, and sent to the UE as an attribute parameter of the CC by using the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group number, or may be a specific CC number in the TA group. If not in the same band, the eNodeB does not carry the TA group identifier corresponding to the CC in the RRC connection reconfiguration message.
- the eNodeB may not determine whether the newly added CC and the currently configured CC belong to the same TA group, and the eNodeB does not carry the TA group identifier corresponding to the CC in the RRC connection reconfiguration message.
- the UE After receiving the RRC connection reconfiguration message of the eNodeB, the UE determines whether the newly configured CC attribute information carries the TA group identifier.
- the identifier is stored as the configuration information of the CC. If the newly added CC does not carry the identifier, the UE determines whether the added CC belongs to the currently existing TA group according to the time offset between the downlink synchronizations of the downlink CCs corresponding to the newly added CC.
- the UE may compare the time offset between the downlink CC corresponding to the newly added CC and the downlink synchronization of the downlink CC corresponding to the candidate CC in each existing TA group, if the offset reaches a pre- If the threshold is set, the CC is considered not to belong to the TA group to which the compared CC belongs; otherwise, it belongs to the TA group.
- the UE initiates a random access procedure on a currently configured CC, notifying the eNodeB that all TAs are not present. If the newly added CC belongs to a current TA group, the UE notifies the eNodeB of the TA group ID of the newly added CC in the RRC connection reconfiguration complete message, which needs to be explained here.
- the TA group identifier may be a displayed TA group sequence number, or may be a specific CC sequence number in the TA group.
- the UE may also notify only the eNodeB that the CC may share the same TA value with the currently configured CC without reporting the group identifier to the eNodeB.
- the UE may report the information to the eNodeB by using another new RRC message or a new information element in the existing RRC message, or a new MAC CE.
- the name of the message is merely a name used for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but it cannot be considered as an embodiment of the present invention. The technical solution cannot be applied to these systems.
- the eNodeB performs a corresponding operation according to the received different information.
- the eNodeB when the eNodeB detects the random access procedure initiated by the UE on the configured CC, the eNodeB sends the preamble and the physical random access channel resource information used by the newly added CCs that do not belong to any current TA group to the UE. . Specifically, the PDCCH (Physical Downlink Control Channel) order message is sent to the UE, where the message includes Preamble and PRACH resource information used by the eNodeB for the newly added CC allocated by the UE. And assigning a corresponding new TA group identifier to the RRC connection reconfiguration message or a new MAC CE.
- PDCCH Physical Downlink Control Channel
- the TA group identifier referred to herein may be a displayed TA group sequence number, or may be a specific CC sequence number in the TA group.
- the name of the message mentioned herein is merely a name for convenience of description. This name cannot limit the scope of application of the embodiment of the present invention, that is, there may be no similar name in some systems, but it cannot be It is considered that the technical solutions in the embodiments of the present invention are not applicable to these systems.
- the eNodeB may also directly allocate a corresponding new TA group identifier and Preamble and PRACH resource information used on the newly added CC by using an RRC connection reconfiguration message or a new MAC CE.
- the TA group identifier referred to here may be one.
- the displayed TA group serial number may also be a specific CC serial number in the TA group.
- the name of the message mentioned herein is merely a name used for convenience of description, and this name is not limited to the scope applicable to the embodiment of the present invention, that is, there may be no similar name in some systems, but It is considered that the technical solutions in the embodiments of the present invention are not applicable to these systems.
- the TA group identifier corresponding to the CC is stored.
- the UE receives the dedicated random access resource allocated for the newly added CC, perform uplink synchronization on the newly added CC by using the dedicated Preamble and PRACH resources.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the learned TA group information, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added to frequently trigger the random access procedure; when the eNodeB cannot determine the TA packet, the UE may also assist in determining the TA packet. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 8, includes the following content.
- the UE always monitors the downlink synchronization of the downlink CC corresponding to the configured uplink CC during the mobile process, and reports the measurement result to the eNodeB.
- the UE compares the time offset between the synchronizations of the downlink CCs corresponding to the uplink CCs between the respective bands. Specifically, the UE may perform monitoring from any downlink CC corresponding to the uplink CC in each of the bands, and may also monitor the downlink CC corresponding to all configured uplink CCs. The time offset between the downlink synchronizations is compared, for example, if the offset difference reaches a preset threshold value and continues for a period of time, the UE will randomly select one of the two bands to initiate randomization. Access process.
- the UE stores but does not immediately apply the TA adjustment value received from the RAR message, and sends the used measurement report information to the eNodeB in the randomly accessed Msg3 message.
- the UE compares the time offset between the synchronizations of the downlink CCs corresponding to the uplink CCs between the TA groups.
- the UE may perform monitoring from any downlink CC corresponding to the uplink CC in each TA group, and may also monitor downlink CCs corresponding to all configured uplink CCs. The time offset between the downlink synchronizations is compared between two and two.
- the threshold may be a threshold with the previous threshold.
- the UE may send a dedicated synchronization report message to the eNodeB, and send the used measurement report information to the eNodeB.
- the synchronization report message specifically used by the UE may be a new RRC message or a new information element of an existing RRC message, or may be a new MAC CE.
- the name of the message is merely a name used for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but it cannot be considered as an embodiment of the present invention. The technical solution cannot be applied to these systems.
- the foregoing monitoring and determining behaviors performed in the same TA group and different TA groups may also be in units of CCs, that is, the UE measures downlink CC synchronization corresponding to all configured CCs, and compares them in pairs.
- the remaining judgment criteria and subsequent processes are the same as described above.
- the UE monitors the synchronization offset of its corresponding downlink CC, if the synchronization offset mutation reaches or exceeds a preset threshold, and does not receive the eNodeB transmission.
- TA Command MAC CE when making adjustments, and its TAT
- the Timing Advance Timer (TA timer) has no timeout.
- the UE When the UE has uplink data to be sent, the UE initiates a random access procedure on the CC. Specifically, the uplink data includes a PUSCH.
- the data transmitted on the channel also includes data transmitted on the PUCCH (Physical Uplink Control Channel) channel.
- the current TA value is adjusted according to the TA adjustment value received in the RAR message.
- the eNodeB adjusts the TA group to which each CC belongs according to the received synchronization measurement report and the TA adjustment value of the uplink signal. Specifically, in the measurement result, if the difference between the time advance of the CC of one band in the same TA group and the time advance of the other band CC reaches the seventh threshold For the value, adjust the TA group to which the CC of the band belongs, and re-allocate the CC of the band to the new TA group; if the difference between the CC time advance of one TA group in each TA group and the time advance of other TA group CCs If the value is smaller than the eighth threshold, the TA group to which the TA group CC belongs is adjusted, and the CCs that belong to the two TA groups are merged into one TA group.
- the process of comparing the timing advance of the CC by the eNodeB may also be performed in units of CCs, that is, according to the measurement result, if the timing advance of one CC in the same TA group and the timing advance of other CCs are If the difference reaches the seventh threshold, adjust the TA group to which the CC belongs, and reassign the CC to the new TA group; if the CC timing advance of one TA group in each TA group is earlier than the time advance of other TA groups If the difference is less than the eighth threshold, adjust the TA group to which the TA group belongs, and merge the CCs that belong to the two TA groups into one TA group.
- the eNodeB sends the updated TA group identity to the UE through the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group serial number, or may be a specific CC serial number in the TA group.
- the UE receives an RRC connection reconfiguration message, and records the information.
- the TA adjustment value is applied.
- the method for determining the timing advance packet provided in this embodiment may be performed after the eNodeB adds a CC to the UE in the foregoing embodiment, that is, after the UE adds the CC, it determines whether the existing CC has changed.
- the method for determining the timing advance packet provided by the embodiment of the present invention, because the UE always monitors the configured CC, so that the eNodeB can timely acquire the change of the TA group during the communication process, and avoid the uplink caused by the incorrect adjustment of the TA value.
- the quality of the transmitted signal deteriorates, avoiding a reduction in system throughput.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 9, includes the following content.
- S901 The UE always monitors the configured uplink CC corresponding to the downlink CC during the mobile process.
- the line is synchronized and the measurement result is reported to the eNodeB.
- the UE compares the time offset between the synchronizations of the downlink CCs corresponding to the uplink CCs between the respective bands. Specifically, the UE may perform monitoring from any downlink CC corresponding to the uplink CC in each band, and may also monitor downlink CCs corresponding to all configured uplink CCs. The time offset between the downlink synchronizations is compared. If the offset difference reaches a preset threshold and continues for a period of time, the UE sends a dedicated synchronization report message to the eNodeB, and the used measurement report information is used. Send to the eNodeB.
- the synchronization report message specifically used by the UE may be a new information element of a new RRC message or an existing RRC message, or may be a new MAC CE.
- the name of the message is merely a name used for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but it cannot be considered as an embodiment of the present invention. The technical solution cannot be applied to these systems.
- the UE compares the time offset between the synchronizations of the downlink CCs corresponding to the uplink CCs between the TA groups. Specifically, the UE may perform monitoring from any downlink CC corresponding to the uplink CC in each TA group, and may also monitor downlink CCs corresponding to all configured uplink CCs. The time offset between the downlink synchronizations is compared between two and two. If the offset difference is less than a preset threshold and continues for a period of time, the threshold may be a threshold with the previous threshold. The UE may send a dedicated synchronization report message to the eNodeB, and send the used measurement report information to the eNodeB.
- the synchronization report message specifically used by the UE may be a new information element of a new RRC message or an existing RRC message, or may be a new MAC CE.
- the name of the message is merely a name used for convenience of description. This name is not limited to the scope of application of the embodiments of the present invention, that is, there may be no similar names in some systems, but it cannot be considered as an embodiment of the present invention. The technical solution cannot be applied to these systems.
- the foregoing monitoring and determining behaviors performed in the same TA group and different TA groups may also be performed in units of CCs, that is, the UE measures downlink CC synchronization corresponding to all configured CCs, and compares them in pairs. The remaining judgment criteria and subsequent processes are the same as described above. S902.
- the eNodeB receives the synchronization measurement report and the TA adjustment value of the uplink signal, and adjusts the TA group to which each CC belongs.
- the TA group to which the CC of the band belongs is adjusted,
- the CC of the band reassigns the new TA group; if the difference between the CC time advance of one TA group and the time advance of the other TA group is less than the eighth threshold, the TA to which the TA group belongs is adjusted.
- Group merges the CCs that belong to the two TA groups into one TA group.
- the process of comparing the timing advance of the CC by the eNodeB may also be performed in units of CCs, that is, according to the measurement result, if the timing advance of one CC in the same TA group and the timing advance of other CCs are If the difference reaches the seventh threshold, adjust the TA group to which the CC belongs, and reassign the CC to the new TA group; if the CC timing advance of one TA group in each TA group is earlier than the time advance of other TA groups If the difference is less than the eighth threshold, adjust the TA group to which the TA group belongs, and merge the CCs that belong to the two TA groups into one TA group.
- the eNodeB sends the updated TA group identity to the UE through the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group number or a specific CC number in the TA group. If the eNodeB deems it necessary, it will indicate that the random access procedure is performed on some or some CCs.
- the Preamble and PRACH resources to be used may also be used by the UE to instruct the UE to initiate a random access procedure on a CC.
- the Preamble and PRACH resources may be carried in the RRC connection reconfiguration message, or may be indicated later by the PDCCH order message.
- the UE receives the RRC connection reconfiguration message, record the information. If a random access procedure is required, the UE performs a random access procedure on the CC according to the indication of the eNodeB: if a dedicated Preamble and PRACH resources are allocated, performing a non-contention random access procedure, otherwise, performing a competition Random access process.
- the method for determining the timing advance packet provided in this embodiment may be performed after the eNodeB adds a CC to the UE in the foregoing embodiment, that is, after the UE adds the CC, it is determined whether the existing CC has changed.
- the method for determining the timing advance packet provided by the embodiment of the present invention because the UE always monitors the configured CC, so that the eNodeB can timely acquire the change of the TA group during the communication process, and avoid the uplink caused by the incorrect adjustment of the TA value.
- the quality of the transmitted signal deteriorates, avoiding a reduction in system throughput.
- the method for determining the timing advance packet provided by the embodiment of the present invention, as shown in FIG. 10, includes the following content.
- the S100K eNodeB receives the data transmitted by each uplink CC, and adjusts the TA group to which each CC belongs according to the TA adjustment value of the uplink data of each CC. Determine whether it is necessary to re-allocate a new TA group for the CC of the band; or merge the CCs originally belonging to the two TA groups into one TA group.
- the eNodeB sends the updated TA group identity to the UE through the RRC connection reconfiguration message.
- the TA group identifier referred to herein may be a displayed TA group number or a specific CC number in the TA group. If the eNodeB deems it necessary, it will indicate that the random access procedure is performed on some or some CCs.
- the Preamble and PRACH resources to be used may also be used by the UE to instruct the UE to initiate a random access procedure on a CC.
- the Preamble and PRACH resources may be carried in the RRC reconfiguration message or may be indicated by the PDCCH order message.
- the UE receives an RRC connection reconfiguration message, and records the information. If a random access procedure is required, the UE performs a random access procedure on the CC according to the execution of the eNodeB: if a dedicated Preamble and PRACH resources are allocated, performing a non-contention random access procedure, otherwise, performing a competition Random access process.
- the method for determining the timing advance packet provided in this embodiment may be performed after the eNodeB adds a CC to the UE in the foregoing embodiment, that is, after the UE adds the CC, it determines whether the existing CC has changed.
- the method for determining the timing advance packet provided by the embodiment of the present invention, because the eNodeB receives the transmission data of each uplink CC separately, so that the eNodeB can timely acquire the change of the TA group during the communication process, thereby avoiding the erroneous adjustment of the TA value.
- the quality of the uplink transmission signal is evil The system throughput is reduced.
- a new extended TA Command MAC CE is used, where the TA group identifier described in the present invention is used for distinguishing, that is, the UE
- the extended TA Command MAC CE is received, the TA group identifier is determined, and the subsequent TA adjustment value is applied to the CC in the TA group.
- the extended TA Command MAC CE format is shown in Figure 11.
- a CC of a plurality of bands belongs to a TA group for a certain UE
- the UE initiates a random access process in a scenario other than the random access in the foregoing embodiment
- the random access channel of the CC with the lowest band frequency is selected to initiate a random access process.
- the base station device 12 provided by the embodiment of the present invention, as shown in FIG. 12, includes an adding unit 1201, a determining unit 1202, and a sending unit 1203.
- the adding unit 1201 is configured to add a carrier component CC to the user equipment UE.
- the determining unit 1202 is configured to determine, according to the acquired timing advance TA group information or a preset rule, the TA group to which the added CC belongs, when the adding unit 1201 adds a CC to the UE, where the TA group is a CC that can share one TA. set.
- the sending unit 1203 is configured to send the identifier information that identifies the TA group to the UE.
- the base station device provided by the embodiment of the present invention can determine the TA group to which the newly added CC belongs according to the acquired TA group information or the preset rule, so that the eNodeB in the prior art is newly added due to uncertainty.
- the TA group of the CC frequently triggers the random access procedure. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- the sending unit 1203 is further configured to send information for querying the TA of the CC to the UE.
- the base station device 12 further includes: a receiving unit 1204 and a grouping unit 1205.
- the receiving unit 1204 is configured to receive a query result reported by the UE, receive the TA packet information sent by the network management center, and receive the downlink CC that is sent by the UE and that is measured by the UE. A measurement report of the time offset between synchronizations; receiving data transmitted through each uplink CC.
- the grouping unit 1205 is configured to perform a TA component group according to the query result, where the CCs in which the TA is within the first threshold and the second threshold are divided into one TA group.
- the user equipment 14 provided by the embodiment of the present invention, as shown in FIG. 14, includes: a receiving unit 1401 and a sending unit 1402.
- the receiving unit 1401 is configured to receive information about a TA that is sent by the eNodeB to query the CC, and receive information about the TA of the CC that is sent by the network management center through the data plane data, and receive the identifier information of the TA group sent by the eNodeB.
- the 1402 is configured to send the query result to the eNodeB, and send the query result to the network management center by using the data bearer.
- the user equipment provided by the embodiment of the present invention can send the information of the TA of each CC to the eNodeB, so that the eNodeB can obtain the TA group information, which is convenient for determining the TA group to which the newly added CC belongs, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added and the random access procedure is triggered frequently. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- the user equipment 14 may further include: a detecting unit 1403, configured to detect downlink synchronization of the downlink CCs corresponding to the configured uplink CCs.
- the sending unit 1402 is further configured to report the measurement result obtained by the detecting unit 1403 to the eNodeB.
- the eNodeB can timely acquire the change of the TA group in the communication process, avoiding the deterioration of the quality of the uplink transmission signal caused by the incorrect adjustment of the TA value, and avoiding the reduction of the system throughput.
- the network management center device 16 as shown in FIG. 16, includes a sending unit 1601, a receiving unit 1602, and a grouping unit 1603.
- the sending unit 1601 is configured to send, by using data plane data, TA information of the query CC to the UE, and send the TA group information to the eNodeB.
- the receiving unit 1602 is configured to receive a query result reported by the UE by using the data bearer.
- the grouping unit 1603 is configured to perform a TA component group according to the query result, where the CC of the TA is within a range defined by the third threshold and the fourth threshold For a TA group.
- the network management center device provided by the embodiment of the present invention can send the information of the TA of each CC to the eNodeB, so that the eNodeB can obtain the TA group information, which is convenient for determining the TA group to which the newly added CC belongs, thereby avoiding the eNodeB in the prior art.
- the TA group of the newly added CC is determined to frequently trigger the random access procedure. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
- the communication system provided by the embodiment of the present invention includes at least one of the base station device, the user equipment, and the network management center device in the foregoing embodiment.
- the eNodeB when the eNodeB adds a CC to the UE, the eNodeB can determine the TA group to which the newly added CC belongs according to the acquired TA group information or the preset rule, thereby avoiding the uncertainty of the eNodeB in the prior art.
- the TA group of the CC is added and the random access procedure is triggered frequently. In this way, the use of random access resources is reduced, the collision probability of the random access process is reduced, and system performance is improved.
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Priority Applications (6)
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EP16183905.5A EP3177086B1 (en) | 2010-01-12 | 2011-01-12 | Method, device, and system for determining timing advance grouping |
BR112012017301-4A BR112012017301B1 (pt) | 2010-01-12 | 2011-01-12 | Método para determinação de agrupamento de avanço de temporização e dispositivo de estação base |
US13/548,145 US8983517B2 (en) | 2010-01-12 | 2012-07-12 | Method, device, and system for determining timing advance grouping |
US14/617,642 US10085287B2 (en) | 2010-01-12 | 2015-02-09 | Method, device, and system for determining timing advance grouping |
US16/124,837 US10645732B2 (en) | 2010-01-12 | 2018-09-07 | Method, device, and system for determining timing advance grouping |
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CN105050178A (zh) | 2015-11-11 |
US20150156798A1 (en) | 2015-06-04 |
CN102123475A (zh) | 2011-07-13 |
US8983517B2 (en) | 2015-03-17 |
US10645732B2 (en) | 2020-05-05 |
EP3177086A1 (en) | 2017-06-07 |
CN105050178B (zh) | 2019-05-03 |
US20180368182A1 (en) | 2018-12-20 |
EP3177086B1 (en) | 2021-05-26 |
EP2525612B1 (en) | 2016-10-19 |
US10085287B2 (en) | 2018-09-25 |
EP2525612A1 (en) | 2012-11-21 |
BR112012017301B1 (pt) | 2022-05-17 |
US20120282969A1 (en) | 2012-11-08 |
EP2525612A4 (en) | 2012-11-21 |
BR112012017301A2 (pt) | 2020-08-25 |
CN102123475B (zh) | 2015-08-19 |
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