WO2011143981A1 - 统计双模单待终端用户驻留双网时长比的方法和装置 - Google Patents
统计双模单待终端用户驻留双网时长比的方法和装置 Download PDFInfo
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- WO2011143981A1 WO2011143981A1 PCT/CN2011/072776 CN2011072776W WO2011143981A1 WO 2011143981 A1 WO2011143981 A1 WO 2011143981A1 CN 2011072776 W CN2011072776 W CN 2011072776W WO 2011143981 A1 WO2011143981 A1 WO 2011143981A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W60/00—Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
- H04W60/005—Multiple registrations, e.g. multihoming
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/08—Testing, supervising or monitoring using real traffic
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W64/00—Locating users or terminals or network equipment for network management purposes, e.g. mobility management
- H04W64/006—Locating users or terminals or network equipment for network management purposes, e.g. mobility management with additional information processing, e.g. for direction or speed determination
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
- H04W88/06—Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals
Definitions
- the present invention relates to a dual-network resident time-to-length ratio statistical technique for a mobile communication system, and more particularly to a statistical dual-mode single-standby terminal user-resident dual-network. Time length ratio method and device.
- the dual mode terminal mainly includes two types of dual mode dual standby terminal and dual mode single standby terminal.
- the terminal can simultaneously insert two SIMs (SIM, Subscriber Identity Module) or Universal Subscriber Identity Module (USIM) cards, and can reside on two different networks at the same time.
- a dual-mode single-standby terminal allows only one SIM or USIM card to be plugged in. It can reside on two different networks, but can only reside on a single network at the same time.
- Time Division Synchronous Code Division Multiple Access TD-SCDMA, Time Division-Synchronous Code
- GSM Global System for Mobile
- Dual mode terminal which is a dual mode single standby terminal.
- the dual-mode single-standby terminal can only reside on one network at a time, the longer the dual-mode single-standby terminal stays in one of the two networks, the probability of generating traffic under the network. The bigger the number, the higher the call charge.
- the 3G network belongs to the third generation mobile communication technology and is more advanced than the second generation mobile communication technology used by the 2G network, it is expected from the perspective of the network operator that the dual-mode single-standby terminal user resides in the 3G network as much as possible, and Initiate business under the 3G network.
- the 3G network has no coverage, and The time is switched to the 2G network to ensure the continuity of the services used by the dual-mode single-standby terminal users, and to reduce the problems of access failure and dropped calls caused by weak coverage. Therefore, the statistics on the duration ratio of the dual-mode single-standby terminal users in the dual-network camping are important for controlling the duration of the dual-mode single-standby terminal users in the dual-network.
- the prior art cannot provide a A method capable of accurately and effectively counting the duration ratio of a dual-mode single-standby terminal user in a dual-network camp. Summary of the invention
- the main purpose of the present invention is to provide a method and apparatus for counting the duration ratio of a dual-mode single-standby terminal user to stay in a dual-network, so as to implement statistics on the duration ratio of the dual-mode single-standby terminal user-resident dual-network.
- the present invention provides a method for counting a dual-mode single-standby terminal user to camp on a dual-network duration ratio, the method comprising:
- each network in the dual network obtain the following parameters in each statistical time period of the period from the statistical start time to the statistical end time of the dual-mode single-standby terminal user: the number of periodic location updates that occur, The number of periodic routing area updates, the duration of calls other than periodic location updates and periodic routing area updates, the number of powered-on users residing, and the periodic location update timer and periodic routing area update timer;
- the time ratio of each dual-mode single-end terminal user to the dual network is obtained.
- the number of periodic location updates in each statistical time period is divided by the number of power-on users in the corresponding statistical time period, and each dual-mode single-standby terminal user is obtained in each statistics.
- the calculating the duration of the stay in the PS single-domain network in the idle state of each dual-mode single-standby terminal user is specifically:
- the number of periodic routing area updates in each statistical time period is divided by the number of power-on users in the corresponding statistical time period, and each dual-mode single-standby terminal user is obtained.
- the number of periodic routing area updates R ( t ) occurring during the statistical time period; adding R ( t ) in each statistical time period to obtain each dual-mode single in the period from the statistical start time to the statistical end time The number of routing area updates R to be used by the end user;
- the calculating the duration of the dwelling in the connection state of each dual-mode single-standby terminal user is specifically: for each network in the dual network, all the periodic location updates and periodicity in each statistical time period are The duration of the call outside the routing area update is added, and the total duration of the stay in the dual-mode single-standby terminal user connection state is obtained, and the total duration of the resident is divided by the number of power-on users in the corresponding statistical time period to obtain each double.
- the C ( t ) in each statistical time period is added to obtain the dwell duration in the connection state of each dual-mode single-standby terminal user in the T start to T end time period.
- the method further includes: respectively, for each network of the dual network, the resident duration of each dual-mode single-standby terminal user in a dual-domain or cs single-domain network, and the idle state in the idle state.
- the length of the dwell time in the single-domain network and the dwell time in the connected state are added, and the duration of each dual-mode single-standby terminal user residing in the dual network is obtained.
- the method further includes:
- the set statistical end time is subtracted from the statistical start time to obtain a statistical time range, and the statistical time is obtained.
- the range is subtracted from the dwell duration of one of the dual-mode single-standby end users in the dual network, and the resident of another network in the dual-network terminal user in the dual-network is obtained. duration.
- the present invention also provides a device for counting a dual-mode single-standby terminal user to camp on a dual-network time-to-length ratio, the device comprising:
- a time setting module configured to set a statistical start time and a statistical end time, and set a statistical time period
- the parameter obtaining module is configured to obtain, for each network of the dual network, the following parameters in each statistical time period of the time period from the statistical start time to the statistical end time of the dual-mode single-standby terminal user: The number of periodic location updates, the number of periodic routing zone updates, the length of calls other than periodic location updates and periodic routing zone updates, the number of parked users that are parked, and the periodic location update timer and periodic routing zone update timing Device
- a duration calculation module configured to calculate, for each network in the dual network, the resident duration of each dual-mode single-standby terminal user in a dual-domain or CS single-domain network according to the obtained parameters The length of the dwell time in the PS single-domain network and the dwell time in the connected state in the idle state, and the duration of each dual-mode single-standby terminal user residing in the dual network;
- the duration ratio calculation module is configured to calculate the duration ratio of each dual-mode single-standby terminal user to the dual network according to the duration of each dual-mode single-standby terminal user residing in the dual network.
- the duration calculation module is further configured to separately divide the number of periodic location updates in each statistical time period by the number of boot users in the corresponding statistical time period for each network in the dual network, to obtain each double The number of periodic location updates L ( 1 ) that the terminal waits for the end user to occur during each statistical time period;
- the duration calculation module is further configured to separately divide the number of periodic routing area updates in each statistical time period by the number of power-on users in the corresponding statistical time period for each network in the dual network, and obtain each The number of periodic routing area updates R ( t ) that the dual-mode single-standby terminal user occurs during each statistical time period;
- the duration calculation module is further configured to add, for each network in the dual network, all the call durations except the periodic location update and the periodic routing area update in each statistical time period, to obtain all pairs.
- the total duration of the stay in the terminal user connection state, and the total duration of the camping is divided by the number of power-on users in the corresponding statistical time period, and each dual-mode single-standby terminal user is connected in each statistical time period.
- Resident duration C ( t ) in the state; The C ( t ) in each statistical time period is added to obtain the dwell duration in the connection state of each dual-mode single-standby terminal user in the T start to T end time period.
- the duration calculation module is further configured to: respectively, for each network of the dual network, the duration and idle time of each dual-mode single-standby terminal user in a dual-domain or CS single-domain network in an idle state. In the state, the dwell time in the PS single-domain network and the dwell time in the connected state are added, and the duration of each dual-mode single-standby terminal user residing in the dual network is obtained.
- the duration calculating module is further configured to: when the dwell duration of one of the dual-mode single-standby terminal users in the dual network is obtained, subtract the statistical starting time from the set statistical ending time to obtain statistics. a time range, and subtracting, from the statistical time range, the dwell duration of one of the dual-mode single-standby end users in the dual network, and obtaining each dual-mode single-standby terminal user in the double The length of time that another network in the network is resident.
- the method and device for collecting the dual-network time-to-length ratio of the dual-mode single-standby terminal user can easily realize the statistics of the resident duration and the proportion of the dual-mode single-standby terminal in the dual network, and statistical The information is more accurate and efficient, and the present invention does not require any changes to the current CN and Universal Mobile Telecommunications System (UTRAN, UMTS Terrestrial Radio Access Network) network, thereby greatly saving the operator's investment cost. . DRAWINGS
- 1 is a flow chart of a method for counting a dual-network single-standby terminal user-resident dual-network time-to-length ratio according to the present invention
- FIG. 2 is a structural diagram of a device for counting a dual-network time-to-length ratio of a dual-mode single-standby terminal user according to the present invention. Detailed ways
- the UE if it is in the process of camping on the network, if it belongs to the dual domain station in the idle state. If it is attached to the circuit switched (CS, Circuit Switched) domain and the packet switched (PS) domain, or belongs to the CS single domain, the time set by the periodic location update timer (T3212) is reached. The UE needs to perform periodic location update, and its main function is to notify the core network (CN, Core Network) that the UE is still attached to the network.
- CS Circuit Switched
- PS packet switched
- the UE In the process of camping on the network, if it belongs to the PS single domain, if the time set by the periodic routing area update timer (T3312) is reached in the idle state, the UE needs to perform periodic routing area update, which is mainly The role is to inform the CN of the PS domain that the UE is also attached to the network.
- the CN When the UE is in the off-network state for a long time, after the time set by the T3212 or T3312 timer is reached, if the periodic location update or periodic routing area update is not performed in time, the CN will set the implicit shutdown timer set by itself. After that, the UE is placed in an implicit shutdown state. After the CN places the UE as an implicit shutdown, the user must re-initiate the attach request to continue to obtain the network service. After any type of call, including location update and routing area update, the UE's internal periodic location update timer or periodic routing area update timer is set to zero.
- the invention utilizes the user in the mobile communication system as long as the user stays in the network, and in the idle state every time period of T3212, a periodic position update is inevitable; in the idle state, every time period of T3312, it is necessary to do One-time periodic routing area update; and the principle that the periodic location update timer/periodic routing area update timer is set to 0 after a call is completed, and the resident time ratio of the dual-mode single-standby terminal user in the dual network is realized. statistics.
- the implementation of the statistical method is as follows: Two types of network LAC (Location Area Code), that is, the LAC of the two types of networks is different.
- LAC Local Area Code
- the method for collecting the dual-network time-to-length ratio of the dual-mode single-standby terminal user provided by the present invention mainly includes the following steps:
- Step 101 Set a statistical start time T start and a statistical end time T end , and set a statistical time period t.
- the single-standby terminal is powered on during the period of time, and no active shutdown occurs; the set statistical time period t needs to be satisfied: The statistical time period t is less than or equal to the foregoing statistical end time T end and the statistical start time T The difference between start , t T end - T start .
- Step 102 Obtain the following parameters in each t period of the T start to T end time period of the dual mode single standby terminal user for each network in the dual network: the number of periodic location updates that occur, and the periodicity The number of routing area updates, the length of the call other than the periodic location update and the periodic routing area update, the number of parked users that are parked, and the periodic location update timer T3212 and the periodic routing area update timer T3312.
- the statistical rules of the number of periodic location updates and the number of periodic routing zone updates are: If only periodic location updates occur in a call, or periodic location updates and periodic routing area updates occur simultaneously, only periodic locations are used.
- the update is included in the statistical sample, and the periodic routing area update is not included in the statistical sample; if only the periodic routing area update occurs in one call, the periodic routing area update is included in the statistical sample.
- the collection methods include but are not limited to: road test, fixed point test, single-user or multi-user signaling tracking, core network counter statistics, and wireless access network counter statistics. , network local or network-wide signaling set and so on.
- the operation of step 102 includes two aspects: On one hand, the number of periodic location updates occurring in the TD-SCDMA network, and the periodic routing area update are acquired.
- T3212 and T3312 acquire GSM network
- the number of periodic location updates that occur, the number of periodic routing zone updates, the length of calls other than periodic location updates and periodic routing zone updates, the number of parked users that are parked, and the periodic location update timer T3212 and periodicity The routing area update timer ⁇ 3312. Therefore, in the subsequent operation steps, unless otherwise specified, the operation is performed separately for each type of network in the dual network.
- T3212 and The T3312 can be obtained directly from the network side.
- Step 103 Calculate the dwell duration of each dual-mode single-standby terminal user in the dual-domain or CS single-domain network in an idle state according to the obtained parameters, for each network in the dual-network.
- the number of periodic location updates in each statistical time period t is divided by the number of power-on users in the corresponding statistical time period t, and each dual-mode single-standby terminal is obtained.
- Step 104 For each network in the dual network, calculate the resident duration of each dual-mode single-standby terminal user in the PS single-domain network in an idle state according to the obtained parameters.
- the number of periodic routing area updates in each statistical time period t is divided by the number of power-on users in the corresponding statistical time period t, and each dual-mode single standby is obtained.
- Step 105 Calculate a dwell duration of each dual-mode single-standby terminal user in a connected state according to the obtained parameters for each network in the dual network. Specifically, for each network in the dual network, the time lengths of all users except the periodic location update and the periodic routing area update in each statistical time period t are added to obtain each statistical time period. The total duration of the stay in the dual-mode single-standby end-user connection state, and divides the total duration of the resident by the number of power-on users in the corresponding statistical time period t, and obtains statistics for each dual-mode single-standby terminal user. The dwell time C ( t ) in the connected state in the time period t; the C ( t ) in each statistical time period is added to obtain the connection state of each dual mode single standby terminal user in the T start to T end time period The dwell time C below.
- Step 106 Calculate the duration of each dual-mode single-standby terminal user residing in the dual network.
- the duration of staying in the dual-domain or CS single-domain network in the idle state of each dual-mode single-standby terminal user the resident duration in the PS single-domain network in the idle state, and the resident duration in the connected state. Adding together, the length of time each dual-mode single-standby terminal user resides in the dual network is obtained.
- Step 107 Calculate a duration ratio of each dual-mode single-standby terminal user camping on the dual network.
- the duration of each dual-mode single-standby terminal user residing in the dual network is compared, thereby obtaining the duration ratio of each dual-mode single-standby terminal user camping on the dual network.
- the set statistical end time can be subtracted when only the duration of staying in one of the dual-mode single-standby end users in the dual network can be obtained.
- the statistical start time is obtained, and the statistical time range is obtained, and the statistical time range is subtracted from the previous dwell duration of one of the dual-mode single-standby end users in the dual network, thereby obtaining each dual mode.
- the method for counting the dual-network time-to-length ratio of the dual-mode single-standby terminal user is applicable to all mobile communication networks with periodic location update or periodic routing area update mechanism.
- the following takes the TD-SCDMA/GSM dual-mode single-standby terminal as an example to further describe the method for the above-mentioned statistical dual-mode single-standby terminal user to stay in the dual-network time-to-length ratio.
- the statistical method for the dual-mode single-standby terminal of the TD-SCDMA/GSM in the dual-network resident time-to-length ratio mainly includes the following steps, where The data of TD-SCDMA and GSM networks need to be collected at the same time.
- Step 201 Set a statistical start time T start and a statistical end time T end , and set a statistical time period t.
- Step 202 Count the number of times that the dual-mode terminal in the TD-SCDMA network is between T start and T end , the number of periodic location updates in each t period, the number of periodic routing area updates in the PS single domain, and the periodicity. Call duration outside the location update and periodic routing zone updates, number of powered-on users, T3212 and T3312.
- Step 203 Count the number of times that the dual-mode terminal in the GSM network is between T start and T end , the number of periodic location updates in each t period, the number of periodic routing area updates in the PS single domain, and the periodic location update. The length of the call outside the periodic routing area update, the number of power-on users that are parked, T3212 and T3312.
- Step 204 Divide the number of periodic location updates in each t period in the TD-SCDMA network by the number of power-on users in the t-cycle, and obtain periodic location update of each user in the TD-SCDMA network in each t-cycle. The number of times L td ( t ).
- Step 205 Add L td ( t ) of each t period to obtain a position update number L td of each user in the TD-SCDMA network in the T start to T end statistical time range.
- Step 206 Multiply L td by the T3212 timer of the TD-SCDMA network, and obtain the idle state resident duration of each user in the CS single domain or dual domain in the TD-SCDMA network in the T start to T end statistical time range. T tdcsps .
- Step 207 dividing the number of periodic routing area updates of the PS single domain in each t period of the TD-SCDMA network by the number of powering users in the t period, and obtaining that each user occurs in the TD-SCDMA network in each t period.
- the number of times the PS single-domain periodic routing area is updated R td ( t ).
- Step 208 Add R td ( t ) of each t period to obtain the number R td of periodic routing area updates of each user in the TD-SCDMA network in the T start to T end statistical time range.
- Step 209 multiplying R td by the T3312 timer of the TD-SCDMA network, and obtaining T start to The idle state resident time T tdps of each user in the PS single domain in the TD-SCDMA network in the T end statistical time range.
- Step 210 Add all the call durations except the periodic location update and the periodic routing area update in each t period of the TD-SCDMA network, and obtain all the dual-mode single-standby users except the periodic location update in each t-cycle. And the total length of the external call in the periodic routing area, and the total duration is divided by the number of power-on users in the t-cycle, and the duration of each dual-mode single-standby user staying in the TD-SCDMA network connection state in each t period is obtained. T tdc . Nnect ( t ).
- Step 211 adding T tdconnect ( t ) of each t period to obtain! ⁇ The duration of each dual-mode single-standby user staying in the TD-SCDMA network connection state within the T end statistical time range
- Step 212 Add T tdcsps , T tdps and T tdconnect to obtain a duration T td of each user camping on the TD-SCDMA network from T start to T end time.
- Step 213 the GSM network periodic location update within each period t divided by the number of starting the period t, to obtain periodic location update times L gsm each user occurs in every GSM network inherent period t (t).
- Step 214 adding L gsm ( t ) of each t period, and obtaining the number of times L gsm of each user's position update under the GSM network in the T start to T end statistical time range.
- Step 215 Multiply L gsm by the T3212 timer of the GSM network, and obtain an idle state of the user in the CS single domain or the dual domain in the GSM network in the T start to T end statistical time range.
- Tg SmCS p S Multiply L gsm by the T3212 timer of the GSM network, and obtain an idle state of the user in the CS single domain or the dual domain in the GSM network in the T start to T end statistical time range.
- Step 216 Divide the number of periodic routing area updates of the PS single domain in each t period of the GSM network by the number of power-on users in the t period, and obtain a PS single-domain period in each GSM network in each t period.
- Step 217 adding R gsm ( t ) of each t period, and obtaining the number of times R gsm of the periodic routing area update of each user in the GSM network in the T start to T end statistical time range.
- Step 218 Multiply R gsm by the T3312 timer of the GSM network, and obtain the idle state of each user in the PS single domain in the TD-GSM network during the T start to T end statistical time range.
- Step 219 Add all the call durations except the periodic location update and the periodic routing zone update in each t period in the GSM network, and obtain all the dual-mode single-standby users except the periodic location update and period in each t-cycle.
- the total length of the external call is updated by the sex routing area, and the total duration is divided by the number of power-on users in the t-cycle, and the duration of each dual-mode single-standby user staying in the GSM network connection state in each t period is obtained.
- Step 220 each of t cycles T gsm ⁇ nnect (t) is added to obtain the statistics T start to T end time for each user to be resident in a single dual mode GSM network connection state duration T gsmc. Nnect .
- Step 221 Add T gsmcsps and T gsmp o T gsm ⁇ nnect to obtain a duration T gsm of each user camping on the GSM network in the T start to T end statistical time range.
- Step 222 dividing T td by T gsm to obtain a dwell duration ratio CTR tdgsm of the dual-mode single-standby terminal in the TD-SCDMA network and the GSM network.
- the related processing operations for the TD-SCDMA network and the processing operations for the GSM network are not sequential, and may be performed simultaneously. It should be understood that the step numbers in the above embodiments are not sufficient to define the chronological order between the operational steps of the TD-SCDMA network and the GSM network.
- T start to T end time of each user in the case where only obtained when the length T td T start to T end time of each user resides TD-SCDMA network, it can be directly derived according to the formula T start
- T gsm T end - T start - T td .
- each user resident in the case that only the duration T gsm of each user camping on the GSM network can be obtained from T start to T end time, each user resident can be directly obtained according to the following formula from T start to T end time.
- the present invention also provides as shown in FIG. 2, the device includes a time setting module 10, a parameter obtaining module 20, a duration calculating module 30, and a duration ratio calculating module 40.
- the time setting module 10 is configured to set a statistical start time and a statistical end time, and set a statistical time period.
- the parameter obtaining module 20 is configured to obtain, for each network of the dual network, the following parameters in each statistical time period of the period from the statistical start time to the statistical end time of the dual-mode single-standby terminal user: The number of periodic location updates, the number of periodic routing zone updates, the length of calls other than periodic location updates and periodic routing zone updates, the number of parked users that are parked, and periodic location update timers and periodic routing zone updates Timer.
- the duration calculation module 30 is configured to calculate, according to the acquired parameters, the duration of staying in the dual-domain or CS single-domain network in the idle state of each dual-mode single-standby terminal user, according to the acquired parameters.
- the duration ratio calculation module 40 is configured to calculate the duration ratio of each dual-mode single-standby terminal user to the dual network according to the duration of each dual-mode single-standby terminal user residing in the dual network.
- the duration calculation module 30 is further configured to separately divide the number of periodic location updates in each statistical time period by the number of power-on users in the corresponding statistical time period for each network in the dual network.
- the number of times of location update of each dual-mode single-standby terminal user during the time period multiplying L by the periodic location update timer to obtain a period from the statistical start time to the statistical end time, each dual-mode list
- the duration calculation module 30 is further configured to separately divide the number of periodic routing area updates in each statistical time period by the number of power-on users in the corresponding statistical time period for each network in the dual network. Get each dual-mode single-standby end user in each statistical time period The number of periodic routing area updates that occur (R ( t ); the R ( t ) in each statistical time period is added, and the time from the statistical start time to the statistical end time is obtained for each dual-mode single-standby terminal user. The number of routing area update times R is multiplied by the periodic routing area update timer to obtain the period from the statistics start time to the statistics end time. Each dual-mode single-standby terminal user is idle in the PS single-domain network. The duration of the stay.
- the duration calculating module 30 is further configured to add, for each network in the dual network, all the call durations except the periodic location update and the periodic routing area update in each statistical time period, Obtain the total duration of the stay in the dual-mode single-standby terminal user connection state, and divide the total duration of the resident by the number of power-on users in the corresponding statistical time period to obtain each dual-mode single-standby terminal user in each statistical time period.
- the length of the dwell time in the state is further configured to add, for each network in the dual network, all the call durations except the periodic location update and the periodic routing area update in each statistical time period, Obtain the total duration of the stay in the dual-mode single-standby terminal user connection state, and divide the total duration of the resident by the number of power-on users in the corresponding
- the duration calculating module 30 is further configured to: for each network in the dual network, the duration of staying in the dual-domain or CS single-domain network in the idle state of each dual-mode single-standby terminal user, The dwell time in the PS single-domain network and the dwell time in the connected state are added in the idle state, and the duration of each dual-mode single-standby terminal user residing in the dual network is obtained.
- the duration calculating module 30 is further configured to: when determining the dwell duration of each of the dual-mode single-standby terminal users in the dual network, subtract the set statistical ending time from the statistical starting time. Obtaining a statistical time range, and subtracting, from the statistical time range, the dwell duration of one of the dual-mode single-standby end users in the dual network, and obtaining each dual-mode single-standby terminal The duration of the user's other network in the dual network.
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Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP11782898.8A EP2521417B1 (en) | 2010-05-18 | 2011-04-14 | Method and device for counting resident time span ratio in dual network of dual mode single standby terminal user |
US13/577,312 US8982816B2 (en) | 2010-05-18 | 2011-04-14 | Method and device for counting resident time span ratio in dual network of dual mode single standby terminal user |
BR112012020366A BR112012020366A2 (pt) | 2010-05-18 | 2011-04-14 | método para efetuar uma estatística de uma razão de extensões de tempo residente de um usuário do terminal de modo duplo de espera simples em redes duplas e dispositivo para efetuar uma estatístaca de uma razão de extensões de tempo residente de um usuário do terminal de modo duplo de espera simples em redes duplas |
JP2012553173A JP5395279B2 (ja) | 2010-05-18 | 2011-04-14 | デュアルモードシングルスタンバイ端末のユーザーがデュアルネットワークに常駐するタイムスパンレートを統計する方法と装置 |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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CN201010184506.4 | 2010-05-18 | ||
CN201010184506.4A CN102256295B (zh) | 2010-05-18 | 2010-05-18 | 统计双模单待终端用户驻留双网时长比的方法和装置 |
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JP (1) | JP5395279B2 (zh) |
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Cited By (2)
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JP2016507937A (ja) * | 2012-12-20 | 2016-03-10 | ゼットティーイー コーポレーションZte Corporation | マルチモード端末及びマルチモード端末のハンドオーバ方法 |
CN107734578A (zh) * | 2017-09-26 | 2018-02-23 | 奇酷互联网络科技(深圳)有限公司 | 移动终端的待机优化方法、装置及移动终端 |
Families Citing this family (6)
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CN104125596B (zh) * | 2014-07-07 | 2018-07-27 | 北京奇虎科技有限公司 | 一种数据流量统计方法和装置 |
CN105827786B (zh) * | 2015-01-04 | 2019-07-05 | 中国移动通信集团公司 | 双待终端的多模互操作方法及装置 |
CN104850409B (zh) * | 2015-06-05 | 2019-06-04 | 北京京东尚科信息技术有限公司 | 统计网页停留时长方法 |
CN110621049B (zh) * | 2018-06-19 | 2022-01-14 | 中国移动通信有限公司研究院 | 一种双模终端的通信方法、装置及双模终端 |
CN113891383B (zh) * | 2021-10-09 | 2023-07-28 | 中国联合网络通信集团有限公司 | 驻网时长占比的确定方法、装置及计算机存储介质 |
CN114885352B (zh) * | 2022-06-17 | 2024-04-19 | 中国联合网络通信集团有限公司 | 一种驻留时长比确定方法、装置及存储介质 |
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EP2521417B1 (en) | 2018-06-06 |
US20120307667A1 (en) | 2012-12-06 |
JP5395279B2 (ja) | 2014-01-22 |
US8982816B2 (en) | 2015-03-17 |
EP2521417A4 (en) | 2017-10-04 |
JP2013520115A (ja) | 2013-05-30 |
HK1164029A1 (zh) | 2012-09-14 |
BR112012020366A2 (pt) | 2017-06-13 |
CN102256295B (zh) | 2015-08-12 |
CN102256295A (zh) | 2011-11-23 |
EP2521417A1 (en) | 2012-11-07 |
HUE038449T2 (hu) | 2018-10-29 |
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