WO2010127537A1 - Procédé, appareil et système de rapport de résultat de mesure de cellule de groupe fermé d'abonnés - Google Patents

Procédé, appareil et système de rapport de résultat de mesure de cellule de groupe fermé d'abonnés Download PDF

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Publication number
WO2010127537A1
WO2010127537A1 PCT/CN2009/074897 CN2009074897W WO2010127537A1 WO 2010127537 A1 WO2010127537 A1 WO 2010127537A1 CN 2009074897 W CN2009074897 W CN 2009074897W WO 2010127537 A1 WO2010127537 A1 WO 2010127537A1
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WIPO (PCT)
Prior art keywords
cell
group
measurement result
user group
measurement
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PCT/CN2009/074897
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English (en)
Chinese (zh)
Inventor
房明
王济勇
赵旸
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to BRPI0924615A priority Critical patent/BRPI0924615A2/pt
Priority to MX2011011889A priority patent/MX2011011889A/es
Publication of WO2010127537A1 publication Critical patent/WO2010127537A1/fr

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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
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/0085Hand-off measurements

Definitions

  • the present invention relates to the field of communication technologies, and in particular, to a method, device and system for reporting a measurement result of a Closed Subscriber Group (CSG) cell.
  • CSG Closed Subscriber Group
  • FIG. 1 is a basic flow chart of reporting and switching of measurement results in the prior art.
  • FIG. 2 is a format diagram of a measurement report reported by a terminal in a GSM circuit domain in the prior art.
  • the main fields of the measurement report in Figure 2 and their meanings are: RXLEV-NCELL (6bit) indicates the measurement result of the signal level of the neighboring area; BCCH-FREQ-NCELL (5bit) indicates the index of the frequency point of the GERAN neighboring area, at present
  • the system message of the serving cell can broadcast the frequency information of the 32 GERAN neighbors.
  • the 32 frequency information is represented by the frequency index (value range is 0 ⁇ 31).
  • the frequency index can indicate the reported measurement.
  • BSIC-NCELL (6bit) represents the base station identification code of the neighboring cell, and not only broadcasts the frequency point information of the neighboring cell but also the base station identity code of the neighboring cell in the system message of the current serving cell.
  • the measurement result of one GERAN cell needs to occupy a 17-bit message space, and one measurement report can report the measurement result of up to six GERAN neighboring cells.
  • UTRAN cells and/or EUTRAN cells appear around the GERAN cell.
  • the GERAN cell needs to support the handover of the terminal to the neighboring area of other access technologies to meet the needs of the service.
  • the UTRAN neighbor information is broadcasted in the system message of the currently serving GERAN cell, including the frequency point and the scrambling code information, and the terminal establishes a 3G neighbor list with a maximum length of 64 through the UTRAN neighbor information. That is, up to 64 UTRAN neighbors are identified by a neighboring cell index of 0 to 63.
  • the prior art extends the measurement report to support the reporting of the UTRAN neighbor cell:
  • the frequency index of the GSM cell in the BCCH-FREQ-NCELL ranges from 0 to 30, and the UTRAN is reported by setting the BCCH-FREQ-NCELL to 31.
  • the measurement result of the neighboring cell, and the neighboring cell index in the 3G neighboring cell list of the UTRAN neighboring cell to be reported is filled in the BSIC-NCELL to identify which UTRAN neighboring cell is reported.
  • the prior art extends the measurement report as follows to support the measurement result of the EUTRAN neighbor cell:
  • the BCCH-FREQ-NCELL uses the value of 0 ⁇ 31 to represent the frequency point information of 32 neighboring cells, and the BCCH-FREQ-NCELL takes the value 31 to represent the UTRAN neighboring cell. Therefore, the frequency information of the GERAN neighboring cell
  • the frequency information of the neighboring area of EUTRAN can only occupy the value of BCCH-FREQ-NCELL 0 ⁇ 30.
  • the number of frequency points in the GSM neighboring area + EUTRAN neighbor frequency The number of points is equal to 31, and the range of the EUTRAN neighbor frequency indication is "31 - EUTRAN neighbor frequency" ⁇ 30.
  • the number of frequency points of the GERAN neighbor cell is 29, EUTRAN neighbor
  • the number of frequency points is 2, then the frequency index of the GERAN neighbor is 0-28, and the frequency of the EUTRAN neighbor is 29 ⁇ 30.
  • the prior art reports the measurement result of the EUTRAN neighbor by setting the BCCH-FREQ-NCELL to the EUTRAN neighbor frequency indication, and fills the report in the last 3 bit part of the RXLEV-NCELL and the 6 bit (9 bit total) of the BSIC-NCELL.
  • the physical cell identifier of the EUTRAN neighboring cell (which is obtained by the terminal itself) identifies which EUTRAN neighboring cell is reported, and the first 3 bits of the RXLEV-NCELL are used to report the measurement result.
  • Another cell in the prior art is a CSG cell, including a UTRAN CSG cell and
  • EUTRAN CSG cell both types of cells can become neighbors of the GERAN serving cell.
  • the prior art cannot report the measurement results of the UTRAN CSG and EUTRAN CSG neighbors using the measurement report.
  • the embodiments of the present invention provide a method, a device, and a system for reporting a measurement result of a group user group, and the measurement report of the prior art is extended to support reporting of the CSG cell measurement result.
  • the embodiment of the present invention provides a method for reporting a measurement result of a group user group cell, where the method includes: measuring a signal quality of a group user group cell, and obtaining a measurement result; generating a measurement report including a measurement result of the group user group cell. And the measurement result includes a global cell identifier of the group user group cell; and the measurement report is sent to the network side.
  • the embodiment of the present invention further provides a terminal, where the terminal includes: a signal measuring unit, configured to measure a signal quality of a group user group cell, and obtain a measurement result; a measurement report generating unit, configured to generate a group user group a measurement report of the measurement result of the cell, where the measurement result includes a global cell identifier of the group user group cell; a measurement report sending unit, configured to send the measurement report to the network side;
  • the embodiment of the present invention further provides a network side device, where the network side device includes: a measurement report receiving unit, configured to receive, by the terminal, a measurement report that includes a measurement result of a group user group cell, where the measurement result is The global cell identifier of the group user group cell is included; the handover determining unit is configured to determine, according to the measurement report, a target group user group cell that the terminal needs to switch, and send the handover result to the terminal;
  • the embodiment of the present invention further provides a handover decision method, where the method includes: receiving, by a terminal, a measurement report that includes a measurement result of a group user group cell, where the measurement result includes the group user group cell
  • the global cell identifier is determined according to the measurement report, and the target group user group cell that the terminal needs to switch is determined, and the handover result is sent to the terminal.
  • the embodiment of the present invention further provides a communication system, where the system includes the terminal and the network side device provided by the foregoing embodiments.
  • the terminal in the embodiment of the present invention can report the measurement result of the CSG cell to the network, and the network side device makes a handover decision according to the measurement result reported by the terminal, and switches the terminal to a more suitable cell to relay the current service.
  • the method, device and system of the embodiments of the present invention are also compatible with the measurement results of the hybrid access neighboring cell and the neighboring cell measurement result of the GERAN macro cell by the prior art.
  • FIG. 1 is a basic flowchart of a measurement result report and handover performed by a system in the prior art
  • FIG. 2 is a measurement report format diagram reported by a terminal in a GSM circuit domain in the prior art
  • FIG. 3 is a CSG cell measurement according to an embodiment of the present invention
  • FIG. 4 is a flowchart of a measurement result packet of a CSG cell according to an embodiment of the present invention
  • FIG. 5 is a second format diagram of a measurement result packet of a CSG cell according to an embodiment of the present invention.
  • FIG. 6 is a basic flowchart of a system for performing measurement result reporting and switching according to an embodiment of the present invention
  • FIG. 7 is a functional block diagram of a terminal according to an embodiment of the present invention.
  • FIG. 8 is a functional block diagram of a network side device according to an embodiment of the present invention.
  • FIG. 9 is a basic working flowchart of a network side device according to an embodiment of the present invention.
  • 10 is a third format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • FIG. 11 is a fourth format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • FIG. 12 is a fifth format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • FIG. 13 is a sixth format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • FIG. 14 is a seventh format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • 15 is a format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • 16 is a ninth format diagram of a measurement result packet of a CSG area according to an embodiment of the present invention.
  • Figure 17 is a diagram 10 of a format of a measurement result message of a CSG area according to an embodiment of the present invention. detailed description
  • the embodiment of the invention provides a method, a device and a system for reporting a measurement result of a CSG cell. Since the CSG cell allows reuse of the physical cell identity, that is, two different UTRAN CSG cells of the same frequency point can use the same PSC (physical scrambling code information); likewise, two EUTRAN CSG cells of the same frequency point can also use the same PCI (physical cell identity). In this way, the frequency and PSC/PCI cannot uniquely identify a CSG cell. To uniquely identify a CSG, GCI (Global Cell Id) is used.
  • the GCI of the UTRAN CSG is represented as GCI-UTRAN
  • the GCI of the EUTRAN CSG is represented as GCI-EUTRAN
  • the GCI is 28 bits to identify a CSG cell.
  • the bit space of a GERAN neighboring area reported in the measurement report is 17 bits.
  • the message space originally reported in a GERAN neighboring area cannot report the measurement result of a CSG cell.
  • the embodiment of the present invention modifies and expands the measurement report of the prior art to implement the measurement result reported by the terminal to the CSG neighboring cell, so that the network can switch the terminal to the target CSG cell. .
  • Example 1 This embodiment provides a method for reporting a measurement result of a group user group cell.
  • FIG. 3 is a flowchart of an implementation method of the embodiment. As shown in Figure 4:
  • Step S301 Measure a signal quality of a group user group cell, and obtain a measurement result
  • Step S302 Generate a measurement report that includes measurement results of the group user group cell, where the measurement result includes a global cell identifier of the group user group cell;
  • Step S303 Send the measurement report to the network side.
  • the measurement result of reporting a CSG cell is reported in a message space in which two GERAN neighboring cell measurement results are reported in the measurement report of the prior art.
  • the present embodiment extends the following measurement reports of the prior art (Fig. 4 is an expanded measurement report message format):
  • a value in the BCCH-FREQ-NCELL field of the first GERAN cell measurement result as an indication of the group user group cell, the value being different from the indication of the UTRAN cell, the GERAN cell Frequency point index and frequency indication of the EUTRAN cell; 5 bits of the RXLEV-NCELL (neighboring reception level) field of the first GERAN cell measurement result, BSIC-NCELL (neighborhood base station) of the first GERAN cell measurement result
  • the 6 bits of the field and the entire 17-bit message space of the second GERAN cell measurement result fill the GCI of the group user group cell; alternatively, the RXLEV-NCELL can also be measured in the first GERAN cell.
  • the remaining 1 bit of the field is filled with the measured signal level value of the group user group cell.
  • the remaining lbit in the RXLEV-NCELL is used to indicate the signal level measurement value of the CSG neighboring cell, and two different levels of signal level values are indicated by 0 and 1.
  • the size of the measured value is specifically indicated by setting two threshold values. If the measured value exceeds the threshold value 1 and is lower than the threshold value 2, the RXLEV-NCELL is reported as 0. If the measured value exceeds the threshold value 2, the RXLEV-NCELL is reported as 1.
  • the two thresholds may be agreed by the network and the terminal in advance, or may be notified to the terminal by the network through a control message; or only when the cell signal strength is the strongest at the frequency and/or allowed to access, Because this does not need to consider the interference problem, the network side knows that the terminal reports the CSG cell that is the strongest after the signal sorting and the terminal can access.
  • Embodiment 2 This embodiment provides a method for reporting measurement results of a group user group cell.
  • the method flowchart of this embodiment refers to FIG. 3. Different from the first embodiment, the present embodiment reports the measurement result of a CSG cell by using a message space in which the measurement results of the three GERAN neighbors are reported in the measurement report of the prior art. In order to be compatible with the measurement results reported by the prior art for UTRAN and EUTRAN, the present embodiment extends the following measurement reports of the prior art (Fig. 5 is an extended measurement report message format).
  • a value in the BCCH-FREQ-NCELL field of the first GERAN cell measurement result as an indication of the group user group cell, the value being different from the indication of the UTRAN cell, the frequency point index of the GERAN cell, and the frequency point indication of the EUTRAN cell.
  • Filling the measured signal level value of the group user group cell in 6 bits of the RXLEV-NCELL field of the first GERAN cell measurement result; the BSIC-NCELL field of the first GERAN cell measurement result and the subsequent two GERAN cells The 28 bits of the message space of the measurement result are selected to fill the global cell identity of the group user group cell.
  • the BCCH-FREQ-NCELL of the first measurement result can be set to "30 - EUTRAN".
  • the number of neighboring cells is used to indicate the measurement result of the CSG.
  • the 6-bit RXLEV-NCELL of the first measurement result is still used to report the measurement result of the cell.
  • the first measurement result is BSIC-NCELL and In the message space of the subsequent two measurement results, a specific bit may be extracted as an indication of a cell access technology type and/or an indication of a cell allowed access type. If the lbit indication is a UTRAN CSG cell or an EUTRAN CSG cell, 2 bits are used.
  • Embodiment 3 This embodiment provides a method for reporting a measurement result of a group user group cell.
  • the flowchart of the method in this embodiment refers to FIG. 3.
  • the report is extended to support different access network categories. Since the 28-bit GCI-UTRAN and GCI-EUTRAN may be exactly the same, in this case the BSS has no The CSG cell under the access technology is distinguished from the reported measurement result. In order to distinguish the CSG cells of the two different access technologies in the measurement report, the embodiment adds an access network type identification information to the reported measurement result. And indicating whether the reported measurement result is a UTRAN CSG cell or an EUTRAN CSG cell.
  • the embodiment may further extend the measurement report to support different access modes.
  • the access modes of the CSG cell are divided into: access (signed), no access (unsigned), and optionally hybrid access.
  • Hybrid access can be used as a separate access method. Inclusion allows access or does not allow access.
  • the hybrid access (Hybrid) cell refers to: the user who subscribes to the cell uses the cell as a CSG cell, and the user who does not sign the cell can also access the cell, but only the service that can be enjoyed in the cell is compared to the subscribed user. To be relatively limited.
  • the terminal accesses the CSG cell that is allowed to access, so that the terminal needs to notify the network of the measurement result of the CSG cell that is not allowed to access, and the auxiliary network makes more A suitable handover decision.
  • the reporting manner of the access mode in this embodiment may be as follows: When the hybrid access needs to be separately distinguished, the reported access mode may include: access, no access, and hybrid access. Any two or all three types; when the hybrid access is not separately distinguished, the reported access mode may include: allowing access and/or disallowing access, and incorporating the hybrid access into the allowed intervention or not allowing access Into, without distinguishing separately.
  • the embodiment adds an access mode identifier to the reported measurement result to indicate different access modes. Specifically include:
  • the set value is different from the indication of the UTRAN cell, the frequency index of the GERAN cell, Frequency indication of the EUTRAN cell;
  • this embodiment can also use the remaining lbit of RXLEV-NCELL to distinguish the access mode of the access network class or cell.
  • (1) and (4) may be used in combination, and (2) and (4) may also be used in combination, so that the measurement result of the CSG cell includes both the access network type and the cell.
  • Access method The following describes in detail the identification methods of several access network categories and access methods:
  • the 5bit BCCH-FREQ-NCELL is used to distinguish between two CSG cells.
  • the number of GSM neighbors + the number of neighbors of EUTRAN is less than or equal to 30, set BCCH-FREQ-NCELL to "30-EUTRAN's neighbor frequency" and "29-EUTRAN”
  • the number of neighboring frequency points is used to report the measurement results of the UTRAN CSG and the EUTRAN CSG cell respectively.
  • the value 31 in BCCH-FREQ-NCELL is set to the indication of UTRAN
  • the value 29 ⁇ 30 is the frequency index of EUTRAN
  • the value 28 is the indication of UTRAN CSG.
  • the value 27 is an indication of the EUTRAN CSG.
  • the value 31 in the Baye lj BCCH-FREQ-NCELL is set to the indication of UTRAN
  • the value 29-30 is the frequency index of EUTRAN
  • the value 28 is to indicate that access is allowed.
  • a value of 27 indicates that access is not allowed
  • a value of 26 indicates hybrid access.
  • the hybrid access cell may also be classified into a category that is allowed to access or a category that is not allowed to access.
  • set BCCH-FREQ-NCELL to "30 - the number of neighbor cells of EUTRAN” indicates the UTRAN CSG cell that is allowed to access; set BCCH-FREQ-NCELL to "29- The number of neighbor cells of the EUTRAN "represents the EUTRAN CSG cell that is allowed to access. Assuming that the number of neighboring frequency points of EUTRAN is 2, the value 31 in BCCH-FREQ-NCELL is set to the indication of UTRAN, and the value 29 ⁇ 30 is the frequency of EUTRAN. Point index, value 28 is the UTRAN CSG cell indicating access, and value 27 is the EUTRAN CSG cell allowed to access.
  • BCCH-FREQ-NCELL If it is also necessary to consider the cell that is not allowed to access, set BCCH-FREQ-NCELL to "28-EUTRAN's neighbor cell number" to indicate that the UTRAN CSG cell is not allowed to access; then set BCCH-FREQ-NCELL
  • the "27-EUTRAN neighbor frequency number" indicates an EUTRAN CSG cell that is not allowed to access. Assuming that the number of neighboring cells of the EUTRAN is 2, the value 26 in the BCCH-FREQ-NCELL indicates that the UTRAN CSG cell is not allowed to access, and the value 25 indicates the EUTRAN CSG cell that is not allowed to access.
  • the hybrid access cell may be classified into the class of the cell that is allowed to access, that is, the above "30-EUTRAN neighbor cell frequency number” or "29-EUTRAN neighbor cell frequency number” may also be classified as not allowed.
  • the cell class to access If the hybrid access cells are separately classified into one class, the BCCH-FREQ-NCELL may be set to "26-the number of neighbor cells of the EUTRAN" indicating the mixed access UTRAN cell; setting the BCCH-FREQ-NCELL to "25" –
  • the number of neighboring frequency points of the EUTRAN "represents the EUTRAN cell of the hybrid access. It is assumed that the number of neighboring cells of the EUTRAN is 2, the value 24 in the Bay lj BCCH-FREQ-NCELL indicates the UTRAN cell of the hybrid access, and the value 23 indicates the EUTRAN cell of the hybrid access.
  • a setting of 0 indicates that it is a UTRAN CSG cell
  • a setting of 1 indicates an EUTRAN CSG cell.
  • the measurement report has no bit space to report the measurement results.
  • the threshold value is set, and when the measured neighboring cell level value is higher than the threshold, the terminal reports the measurement result of the CSG cell.
  • the threshold may be agreed by the network and the terminal in advance, or may be notified to the terminal by the network through a control message; or reported only when the cell signal strength is the strongest at the frequency and/or allowed to access, because There is no need to consider the problem of interference.
  • the network side knows that the terminal reports the CSG cell that is the strongest after the signal ranking and the terminal can access.
  • the remaining lbit of RXLEV-NCELL is used to distinguish different access modes of users. For example, the three access modes are divided into two categories (the hybrid access cells are classified into the allowed access categories), and 0 and 1 are used to distinguish the two types.
  • the specific bit may be extracted in the remaining message space as an indication of the type of the cell access technology and/or the cell permission.
  • An indication of the type of access If the lbit indication is a UTRAN CSG cell or an EUTRAN CSG cell, for example, a CSG cell that is allowed to access by the reported cell using 2 bits, a CSG cell or a hybrid access cell that is not allowed to access.
  • the network type indication and/or the access mode of the user of the group user group that needs to be reported are determined by the agreement with the network side; or the group user that needs to be reported is determined according to the notification sent by the network side.
  • the specific reporting policy may be a combination of one or more of the following sub-policies: a. The access technology category of the reporting/non-reporting cell of the terminal; b. The class reported/not reported by the terminal; c. The terminal reports/does not report The cell that is not allowed to access; d. The terminal reports/does not report the hybrid access cell; e. The terminal reports the mixed access cell as/not as the allowed access cell.
  • Embodiment 4 This embodiment provides a system for reporting CSG measurement results.
  • FIG. 6 is a basic flowchart of the measurement result reporting and switching performed by the system of the embodiment of the present invention. As shown in FIG. 6, the system includes a terminal and a network side device, and the terminal sends a measurement report including a measurement result of the CSG cell to the network side device based on the measurement result of the network, and the network side device performs a handover decision on the terminal according to the received measurement report. The terminal is notified of the result of the handover.
  • FIG. 7 is a functional block diagram of the terminal 70 of the present embodiment.
  • the terminal 70 includes: a signal measuring unit 701, configured to measure a signal quality of a group user group cell, and obtain a measurement result; a measurement report generating unit 702, configured to generate a measurement report that includes a measurement result of the group user group cell.
  • the measurement result includes a global cell identifier of a group user group cell; a measurement report sending unit
  • the method is used to send the measurement report to a network side.
  • the measurement report sending unit 703 is configured to: when the measured signal strength of the group user group cell is greater than a set threshold, send the measurement report to the network side; or when the measured group of user groups When the signal strength is the strongest at the same frequency point, the measurement report is sent to the network.
  • the measurement report generating unit 702 of this embodiment is configured to generate a measurement result of a group user group cell by using a message space of two or three GERAN cell measurement results.
  • the measurement report generating unit 702 of this embodiment is configured to generate a measurement result of a group user group cell by using a message space of two or three GERAN cell measurement results.
  • the terminal 70 of this embodiment further includes: a report type determining unit 704, configured to determine, by using an agreement with the network side, a network type indication of the group user group cell that needs to be reported and
  • the measurement report generated by the measurement report generating unit 702 of the embodiment further includes: a network type indication of the group user group cell and/or an access mode of the user.
  • FIG. 8 is a functional block diagram of a network side device according to the embodiment.
  • the network side device 80 of this embodiment includes: a measurement report receiving unit 801, configured to receive a measurement report that is sent by the terminal and includes a measurement result of a group user group cell, where the measurement result includes the group user The global cell identifier of the group cell; the handover determining unit 802 is configured to determine, according to the measurement report, a target group user group cell that the terminal needs to switch, and send the handover result to the terminal. Since the network side device makes the switching decision based on the measurement result as the prior art, the description will not be repeated here.
  • the network side device of this embodiment may be a BSS or a BSC.
  • the network side device 80 of this embodiment further includes: a reporting policy sending unit 803, configured to send a reporting policy to the terminal, to notify the terminal of the network type indication of the group user group cell that needs to be reported and/or Or the user's access method.
  • the policy may include: a. an access technology class reported by the terminal to report/not report the cell; b. a class reported/not reported by the terminal to access the cell; c. Reporting/not reporting the cell that is not allowed to access; d.
  • the terminal reports/not reports the hybrid access cell; e.
  • the terminal reports the mixed access cell as/not as the allowed access cell.
  • FIG. 9 is a basic working flowchart of the network side device performing handover decision according to the embodiment. As shown in Figure 9:
  • Step S901 The measurement report that includes the measurement result of the group user group cell sent by the terminal, where the measurement result includes the global cell identifier of the group user group cell;
  • Step S902 Determine, according to the measurement report, a target group user group cell that the terminal needs to switch, and send the handover result to the terminal.
  • the terminal in the embodiment of the present invention can report the measurement result of the CSG to the network, and the network side device makes a handover decision according to the measurement result reported by the terminal, and switches the terminal to a more suitable cell to continue the current service. At the same time, it can also be compatible with the measurement result of the hybrid access neighboring area and the report of the neighboring area measurement result of the GERAN macro cell in the prior art.
  • the terminal further needs to report other information of the CSG cell other than the information of the global cell identity of the CSG cell mentioned in Embodiments 1, 2, and 3, such as a PLMN ID (Public) Land Mobile Network Identity, CSG Group Identity (CSG ID), access mode indication (allowed access, hybrid access), etc.
  • PLMN ID Public
  • CSG ID CSG Group Identity
  • access mode indication allowed access, hybrid access
  • the message space of an integer number of GERAN neighbor measurements is used to report this information.
  • the size of the message space of the reported measurement report may be equal to the size of the message space of at least 3 GERAN cell measurement results.
  • the other information of the CSG cell may include a combination of information such as at least one or more of PLMN ID information and CSG identified information.
  • the PLMN ID field space of 24 bits and sizes may be reserved in the message space of the measurement report to place the information of the PLMN ID, as shown in FIG.
  • a CSG group identifier field space of 27 bits in size may be reserved in the message space of the measurement report to place the information of the CSG group identifier, as shown in FIG. Show.
  • an indication information field space of the PLMN ID may be reserved in the message space of the measurement report, where the indication information field space of the PLMN ID includes indicating whether the measurement report includes the CSG.
  • the indication information of the PLMN ID of the cell, the field space of the indication information field space of the PLMN ID in the measurement report is PLMN ID Ind, as shown in FIG.
  • an indication information field space of the CSG group identifier may be reserved in the message space of the measurement report, where the indication information field space of the CSG group identifier includes a CSG indicating whether the CSG cell is included in the measurement report.
  • the indication information of the group identifier is as shown in FIG.
  • the message space of the measurement report may be designed to simultaneously report the indication information of the PLMN ID and the indication information of the CSG group identifier, the information of the PLMN ID, and the information of the CSG group identifier, as shown in FIG. 14.
  • the terminal may not report the information of the PLMN ID of the CSG cell. Therefore, only the PLMN may be reserved in the message space of the measurement report.
  • the ID indicates the information field space without the PLMN ID field space, as shown in FIG.
  • the terminal may not report the CSG group identifier information of the CSG cell, therefore, Only the indication information field space of the CSG group identity may be reserved in the message space of the measurement report without the CSG group identity field space, as shown in FIG. 16. Further, as shown in FIG. 16, as shown in FIG.
  • the CSG group ID is the same.
  • the terminal may not report the information of the PLMN ID of the CSG cell or the CSG group identity of the CSG cell. Therefore, only the PLMN ID may be reserved in the message space of the measurement report.
  • the information field space is indicated without the PLMN ID field space, and only the indication information field space of the CSG cell identity is reserved in the message space of the measurement report without the CSG cell identity field space.
  • the terminal may not report any PLMN ID, PLMN ID Ind, CSG ID, CSG ID Ind, and achieve the effect that the PLMN ID Ind does not report the PLMN ID and the CSG ID Ind indicates that the CSG ID is not reported.
  • the foregoing program may be stored in a computer readable storage medium, and the program is executed when executed.
  • the steps of the foregoing method embodiments are included, and the foregoing storage medium includes: a medium that can store program codes, such as a ROM, a RAM, a magnetic disk, or an optical disk.

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  • Mobile Radio Communication Systems (AREA)

Abstract

Les modes de réalisation de la présente invention portent sur un procédé, un appareil et un système de rapport de résultat de mesure d'une cellule d'un groupe fermé d'abonnés (CSG). Le procédé de rapport du résultat de mesure de la cellule CSG comprend les étapes suivantes : mesure de la qualité de signal de la cellule CSG et obtention du résultat de mesure; génération d'un rapport de mesure comprenant le résultat de mesure de la cellule CSG, le résultat de mesure comprenant l'identifiant de cellule globale (GCI) de la cellule CSG; envoi du rapport de mesure au côté réseau. Le procédé, l'appareil et le système décrits par les modes de réalisation de la présente invention peuvent rapporter le résultat de mesure de la cellule CSG au réseau, et le côté réseau prend une décision de transfert conformément au résultat de mesure rapporté par le terminal, puis le terminal est transféré à une cellule plus appropriée pour poursuivre le service courant. Par ailleurs, le rapport du résultat de mesure de la cellule voisine d'accès hybride et du résultat de mesure de cellule voisine d'une macrocellule de réseau d'accès radio GSM/EDGE (GERAN) dans l'état antérieur de la technique est compatible.
PCT/CN2009/074897 2009-05-08 2009-11-11 Procédé, appareil et système de rapport de résultat de mesure de cellule de groupe fermé d'abonnés WO2010127537A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
BRPI0924615A BRPI0924615A2 (pt) 2009-05-08 2009-11-11 método, aparelho e sistema para reportar resultados de medição
MX2011011889A MX2011011889A (es) 2009-05-08 2009-11-11 Método, aparato y sistema para reportar el resultado de medicion de celula del grupo cerrado de suscriptores.

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PCT/CN2009/071706 WO2010127506A1 (fr) 2009-05-08 2009-05-08 Procédé, dispositif et système de rapport de résultat de mesure d'une cellule de groupe fermé d'abonnés
CNPCT/CN2009/071706 2009-05-08

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PCT/CN2009/074897 WO2010127537A1 (fr) 2009-05-08 2009-11-11 Procédé, appareil et système de rapport de résultat de mesure de cellule de groupe fermé d'abonnés

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CN102740347A (zh) * 2011-04-02 2012-10-17 中兴通讯股份有限公司 未知邻区的信号质量信息的获取方法、装置及系统
CN105519170A (zh) * 2013-04-24 2016-04-20 华为技术有限公司 一种上行反馈的方法、设备和系统
CN106572508B (zh) * 2015-10-13 2019-07-12 电信科学技术研究院 一种将终端设备切换到目标小区的方法、装置及基站
CN116631798A (zh) * 2021-06-10 2023-08-22 武汉领普科技有限公司 自发电开关、其控制方法、配网方法、处理方法与系统
CN116528284A (zh) * 2022-01-24 2023-08-01 华为技术有限公司 通信方法以及通信装置

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CN101983522A (zh) 2011-03-02
BRPI0924615A2 (pt) 2016-03-01
WO2010127506A1 (fr) 2010-11-11
CN101983522B (zh) 2013-04-17
MX2011011889A (es) 2012-01-27

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