WO2015107574A1 - ログデータ収集システム、端末装置及びログデータ収集方法 - Google Patents
ログデータ収集システム、端末装置及びログデータ収集方法 Download PDFInfo
- Publication number
- WO2015107574A1 WO2015107574A1 PCT/JP2014/004762 JP2014004762W WO2015107574A1 WO 2015107574 A1 WO2015107574 A1 WO 2015107574A1 JP 2014004762 W JP2014004762 W JP 2014004762W WO 2015107574 A1 WO2015107574 A1 WO 2015107574A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- transmission
- log data
- terminal device
- log
- time
- Prior art date
Links
Images
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/06—Management of faults, events, alarms or notifications
- H04L41/069—Management of faults, events, alarms or notifications using logs of notifications; Post-processing of notifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/01—Protocols
- H04L67/06—Protocols specially adapted for file transfer, e.g. file transfer protocol [FTP]
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F11/00—Error detection; Error correction; Monitoring
- G06F11/30—Monitoring
- G06F11/34—Recording or statistical evaluation of computer activity, e.g. of down time, of input/output operation ; Recording or statistical evaluation of user activity, e.g. usability assessment
- G06F11/3466—Performance evaluation by tracing or monitoring
- G06F11/3476—Data logging
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/50—Network services
- H04L67/60—Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
- H04L67/62—Establishing a time schedule for servicing the requests
Definitions
- the present invention relates to a log data collection system, a terminal device, a log data collection method, and a program, and more particularly, to a log data collection system, a terminal device, a log data collection method, and a program for collecting log data accumulated in the terminal device. .
- the log data collection system collects log data for multiple terminal devices by periodically sending log data accumulated in the terminal device such as location information and application usage history from the terminal device to the log collection server It is a system that consolidates on a server.
- An example of a technique related to a log data collection system is disclosed in Patent Literature 1, Patent Literature 2, and Patent Literature 3.
- Patent Document 1 components corresponding to a terminal device and a log collection server are referred to by the names of an agent terminal device and a management server device, respectively.
- the management server device distributes a log collection schedule to the agent terminal device. Then, the agent terminal device transmits the collected log data to the management server device at the time specified in the distributed log collection schedule.
- Patent Document 2 components corresponding to a terminal device and a log collection server are referred to by the names of a distributed device and a central device, respectively.
- the log data collection system disclosed in Patent Document 2 is intended to collect log data when a certain abnormality occurs in a distributed apparatus with high frequency. Then, the load on the distribution device and the central device is periodically monitored and collected at a low load.
- Patent Document 3 components corresponding to a terminal device and a log collection server are referred to by names of a client and a server, respectively.
- Machine information collection is targeted as a process corresponding to log collection.
- the machine information collection system disclosed in Patent Document 3 includes a method of collecting machine information according to a schedule distributed from a server to a client, and a method of starting collection of machine information only when the client machine load is low. As a result, it is possible to distribute the machine load and the network load accompanying the collection of machine information.
- FIG. 9 is a diagram showing an example of background traffic and log data collection traffic.
- This example shows a situation in which the background traffic TR1 becomes maximum around 12:00, and the log data collection traffic alone is substantially constant over 24 hours.
- the entire communication traffic TR2 increases or decreases in accordance with the fluctuation of the background traffic TR1
- congestion CN occurs at the peak time.
- Extra communication traffic may occur depending on the state of the terminal device at the timing of transmitting log data from the terminal device.
- states such as an active state and an idle state between the terminal device and the base station (specific state names and number of states vary depending on the wireless network standard).
- data transmission / reception is performed in an active state, and otherwise it is in an idle state in order to suppress radio resources and power consumption.
- the present invention has been made to solve such problems, and a log data collection system, a terminal device, and the like for realizing collection within the transmission deadline while leveling a network load accompanying collection of log data, It is an object to provide a log data collection method and program.
- a log data collection system includes: A terminal device for storing log data; A collection device that collects the log data from the terminal device via a network, The terminal device The collection device collects the log data based on the state of the terminal device, the state of the network, and the remaining time of the transmission allowable period within a transmission allowable period that is a time zone in which the transmission of the log data is allowed. Transmission determining means for determining the timing of transmission to.
- the terminal device is: A storage unit that stores log data and a transmission allowable period that is a time zone in which the transmission of the log data is allowed; Within the permissible transmission period, the timing for transmitting the log data to the collection device connected via the network is determined based on the own state, the state of the network, and the remaining time of the permissible transmission period.
- the log data collection method includes: A log data collection method for collecting the log data using a terminal device that accumulates log data and a collection device connected to the terminal device via a network,
- the terminal device is Timing of transmitting the log data based on the state of the terminal device, the state of the network, and the remaining time of the transmission allowable period within a transmission allowable period that is a time zone in which the transmission of the log data is permitted Decide
- the log data is transmitted to the collection device at the determined timing.
- the program according to the fourth aspect of the present invention is:
- the log data is transmitted based on its own state, the state of the network, and the remaining time of the permissible transmission period within the permissible transmission period, which is a time zone in which transmission of the log data stored by itself is permitted.
- a transmission decision process for deciding timing A transmission process for transmitting the log data to the collection device connected via the network according to the determined timing; Is executed on the computer.
- the present invention it is possible to provide a log data collection system, a terminal device, a log data collection method, and a program for realizing collection within the transmission deadline while leveling the network load accompanying collection of log data.
- FIG. 1 is a block diagram showing an overall configuration of a log data collection system 1000 according to the first exemplary embodiment of the present invention.
- the log data collection system 1000 includes a terminal device 200 that accumulates log data, and a collection device 100 that collects log data from the terminal device 200 via a network N.
- the terminal device 200 includes at least a storage unit 210 and a transmission determination unit 220.
- the storage unit 210 stores log data 2101 and an allowable transmission period 2102.
- the log data 2101 includes position information of the terminal device 200, operation history by the user of the terminal device 200, an application state, and the like.
- the transmission allowable period 2102 is a time zone in which the log data 2101 is allowed to be transmitted. That is, the transmission allowable period 2102 is a time zone determined by the start time and the end time. Note that the transmission allowable period 2102 may be specified by either the collector of the log data 2101 or the user. Further, the transmission allowable period 2102 may be determined based on the history of the traffic amount of the network N.
- the history of the communication amount of the network N is, for example, the communication traffic described above, and is the total of the background traffic and the log data collection traffic described above, or at least includes the background traffic.
- the transmission determination unit 220 is an example of a transmission determination unit, and collects log data 2101 within the transmission allowable period 2102 based on the state of the terminal device 200, the state of the network N, and the remaining time of the transmission allowable period 2102.
- the timing to transmit to the apparatus 100 is determined.
- the state of the terminal device 200 includes, for example, the type of connection line to which the terminal device 200 is currently connected to the network N, the state of establishment of the connection with the network N, and the like.
- the state of the network N is, for example, communication traffic at the present time.
- the remaining time of the allowable transmission period 2102 indicates the remaining time from the current time to the end time.
- FIG. 2 is a flowchart showing a flow of the log data collection method according to the first exemplary embodiment of the present invention.
- the terminal device 200 accumulates the log data 2101 in the storage unit 210 as appropriate during normal operation (S101).
- the terminal device 200 refers to the storage unit 210 and determines whether or not the current time is within the transmission allowable period 2102 (S102). If it is outside the permissible transmission period, the process returns to step S101, and if within the permissible transmission period, the process proceeds to step S103.
- the transmission determining unit 220 determines the transmission timing (S103). That is, the transmission determination unit 220 determines the timing for transmitting the log data 2101 to the collection device 100 based on the state of the terminal device 200, the state of the network N, and the remaining time of the transmission allowable period 2102. Thereafter, the terminal device 200 transmits the log data 2101 to the collection device 100 at the determined timing.
- the transmission timing of log data is determined within a transmission allowable time in which transmission of log data is permitted based on a history of traffic of the network N. That is, in consideration of the past network load (communication traffic), a transmission allowable time in which a certain range (start time and end time) is given to a theoretically appropriate transmission timing is used.
- start time and end time a transmission allowable time in which a certain range (start time and end time) is given to a theoretically appropriate transmission timing is used.
- the second embodiment of the present invention is an application example of the first embodiment. That is, the transmission determining means prioritizes communication of data other than the log data through the network as the current time is closer to the start time of the transmission allowable period in the transmission allowable period, and the current time is the transmission allowable period. It is desirable to determine the timing for transmitting the log data to the collection device by giving priority to the transmission of the log data to the collection device as it is closer to the end time. As a result, when there is a margin in the network load, log data is transmitted early. On the other hand, if the network continues to be heavily loaded, priority is given to the transmission of log data over other communications. In addition, it is possible to satisfy the restrictions on the transmission deadline while considering the load on the network or the like.
- FIG. 3 is a block diagram showing the configuration of the log data collection system 1 according to the second embodiment of the present invention.
- the log data collection system 1 includes one log collection server 10 and terminal devices 20, ..., 2n.
- the log collection server 10 and the terminal devices 20,..., 2n can communicate with each other via the network N.
- the log data collection system 1 is an embodiment of the log data collection system 1000
- the log collection server 10 is an embodiment of the collection device 100
- the terminal device 20 and the like are the terminals described above.
- 1 is an example of an apparatus 200.
- the log collection server 10 includes a schedule generation unit 11, a schedule transmission unit 12, a log collection unit 13, and a storage device 14.
- the schedule generation unit 11 generates a log collection schedule for each terminal device.
- the schedule generation unit 11 generates each log collection schedule for each terminal device to be collected based on a schedule generation operation by the system administrator.
- the log collection schedule includes the transmission allowable period 2102 described above. The method for generating the log collection schedule will be described later.
- the schedule transmission means 12 transmits the log collection schedule generated for each terminal device to the corresponding terminal device.
- the log collection means 13 receives the log data transmitted from each terminal device and stores it in the storage device 14.
- the storage device 14 stores the log data 141 received by the log collection unit 13.
- the terminal device 20 includes a storage device 21, a log storage unit 22, a schedule reception unit 23, a transmission determination unit 24, and a log transmission unit 25.
- the storage device 21 stores log data 211, a log collection schedule 212, a transmission determination score 213, a transmission determination score threshold function 214, and a transmission determination score threshold 215.
- the log data 211 is equivalent to the log data 2101 described above.
- the log collection schedule 212 is generated and transmitted from the log collection server 10 for the terminal device 20.
- the transmission determination score 213 is an example of an index value indicating a degree of suitable transmission of log data at the current time.
- the transmission determination score threshold 215 is an example of a threshold for permitting transmission of log data at the current time.
- the transmission decision score threshold function 214 is a predetermined function for calculating the transmission decision score threshold 215 based on the current time.
- the log storage means 22 stores various data acquired on the terminal device 20 in the storage device 21 as log data 211.
- the schedule receiving unit 23 receives the log collection schedule transmitted from the log collection server 10 and stores it in the storage device 21 as the log collection schedule 212.
- the transmission determination unit 24 determines the timing for transmitting the log data 211 stored in the storage device 21 to the log collection server 10. A method for determining the timing for transmitting log data will be described later.
- the log transmission unit 25 transmits the accumulated log data 211 to the log collection server 10 at the timing determined by the transmission determination unit 24.
- FIG. 4 is a diagram showing an example of a log collection schedule according to the second embodiment of the present invention.
- the log collection schedule for one terminal is expressed as a transmission allowable period (a pair of start time and end time) that appears periodically.
- the transmission allowable periods P11 and P12 for the terminal 1 the transmission allowable periods P21 and P22 for the terminal 2, the transmission allowable periods P31 and P32 for the terminal 3, and the transmission allowable period for the terminal 4.
- P41 and P42 are set.
- the end time of the allowable transmission period P11 is the log transmission time limit L11
- the end time of the allowable transmission period P12 is the log transmission time limit L12.
- the log transmission period for one terminal is called a log transmission period.
- the period from the log transmission time limit L11 to the log transmission time limit L12 corresponds to the log transmission cycle LSC in the terminal 1.
- the schedule generation unit 11 creates a log collection schedule having a length that matches the log transmission cycle. For example, when the log transmission cycle is one day (24 hours), the generated log collection schedule has a length of 24 hours, in which the transmission allowable period for each terminal device appears exactly once. Note that the log transmission period and the log collection schedule do not need to match the length, and for example, the transmission allowable period for each terminal device may appear three times in a 24-hour log collection schedule. . Thereby, compared with the case where the log transmission period and the length of the log collection schedule are matched, the transmission allowable period for each terminal can be set flexibly and easily.
- the schedule generation unit 11 calculates the transmission allowable period in the terminal device based on the history of network traffic other than the past log data communication, that is, the background traffic. Moreover, the schedule production
- An example of the method for determining the log transmission cycle is to match the cycle of the action to be executed using the collected log data. For example, in a case where the movement history of the terminal device is collected as log data and the advertisement distribution based on the result is performed once a day, the log transmission cycle is set to one day according to the advertisement distribution cycle.
- the log transmission cycle does not need to be fixed and may be variable.
- Log Collection Server 10 Generation of Log Collection Schedule
- time 0 indicates the start time of the log collection schedule
- time slot indicates the elapsed time from time 0.
- An example of the length of one time slot is 1 second, but is not necessarily limited thereto.
- the total communication traffic upper limit C is determined in advance. The value of the upper limit value C corresponds to the upper limit value of the total value of background traffic and log collection traffic in each time slot, and an example of the unit is Gbit / second.
- Step S11 The schedule generation means 11 calculates a predicted value Tr [t] of background traffic for each time slot t within the range of the log transmission schedule (example of unit is Gbit / second).
- An example of the background traffic calculation means is that the log transmission schedule range is 24 hours, and the average of past total traffic measurement values for the same time as each time slot t is Tr [t].
- Step S12 The schedule generation means 11 calculates the log transmission allowable number N [t] in each time slot t by the following procedure (S22-1 to S22-3).
- the schedule generation means 11 calculates the total value TrSum of Tr_max [t] for all time slots using the following equation (2). And the schedule production
- N [t] is set to an integer by any of rounding up, rounding down, or rounding.
- the schedule generation means 11 may add correction so that the sum of N [t] for all time slots matches the number n of terminal devices.
- FIG. 6 shows an example of a process of calculating the log transmission allowable number N [t].
- N the number of terminal devices
- n 10
- N [5] 3 is set by adding correction for rounding up the result of N [5] so that the total value of N [t] becomes the following expression (6).
- Step S13 The schedule generation means 11 determines the log transmission deadline for each terminal device in a form that satisfies the log transmission allowable number N [t] that is the calculation result of step S12.
- an example of a method for determining the log transmission time limit is to assign early time slots in ascending order of numbers assigned to the terminal devices in advance.
- Step S14 The schedule generation unit 11 determines the transmission allowable period for each of the terminal devices 20 to 2n under the log collection server 10 based on the log transmission time limit determined in step S13.
- the schedule transmission unit 12 transmits the log collection schedule generated in (1) to each terminal device.
- each terminal device may periodically acquire a log collection schedule from the log collection server 20 in addition to transmitting from the log collection server 20 to the terminal devices 20 to 2n.
- Terminal Device 20 Log Accumulation Log accumulation means 22 uses event data such as application activation and location information acquisition in its own terminal device as a trigger to log data on the contents of the event in storage device 21 built in the terminal device. Accumulate as 211.
- event data such as application activation and location information acquisition in its own terminal device as a trigger to log data on the contents of the event in storage device 21 built in the terminal device. Accumulate as 211.
- An example of an event is to measure the current position using GPS (Global Positioning System) at regular intervals.
- GPS Global Positioning System
- a set of measurement time and position information which is a measurement result is log data.
- Another example of the event is that a user operation such as activation of an application on a smartphone or screen transition is an event, and a set of time, application name, and operation name is log data.
- (3) log accumulation processing is independent of (1) log collection schedule generation processing and (2) log collection schedule transmission processing, and the temporal context is not limited.
- Terminal device 20 Determination of log transmission timing
- the transmission determination means 24 determines the timing for transmitting the log data stored in the terminal to the log storage server within the allowable transmission period determined in (1). decide. Here, by performing the following processing at regular time intervals (for example, every second), it is determined whether or not to transmit log data at that time.
- the transmission determining means 24 checks whether or not the current time t is within the allowable transmission period set in the terminal device. That is, the transmission determination unit 24 refers to the log collection schedule 212 stored in the storage device 21 and determines whether or not the current time t is within the transmission allowable period. If it is within the permissible transmission period, the process proceeds to step S22. Otherwise, the process is terminated.
- Step S22 The transmission determining unit 24 checks whether or not the log data has been transmitted within the current allowable transmission period. If it has not been transmitted, the process proceeds to step S23. If it has been transmitted, the process ends.
- Step S23 The transmission determination means 24 calculates a transmission determination score S [t] at the current time t.
- the transmission decision score S [t] is a numerical value of the degree of situation suitable for data transmission at time t, and is a numerical value calculated from the state of the terminal device and the network. That is, the transmission determining unit 24 includes an index value calculating unit that calculates an index value indicating a degree of appropriate transmission of log data at the current time based on the state of the terminal device 200 and the state of the network N.
- a higher score is assigned than in other cases. This can also be regarded as a state in which the terminal device 200 has a system capable of data communication.
- the transfer rate of other communications may be reduced, so a lower score is assigned than in other cases.
- S [t] An example of a specific method for calculating S [t] is as follows. When the terminal is connected to Wi-Fi, “10” is added to S [t]. If the terminal is within 5 seconds after the last communication, add “3” to S [t]. If the terminal is not currently communicating, add “1” to S [t].
- the state may be added to the transmission determination score. For example, the score may be lower as the network is more congested.
- the battery of the terminal is consumed every time log data is transmitted, and therefore, in addition to the above-described problem, there is another problem that the usage time of the battery is reduced.
- the log data is transmitted after the transition from the idle state to the active state (ST). At this time, although the log data itself is not transmitted, battery consumption accompanying the state transition ST occurs.
- the score is calculated higher. is there. Therefore, it is easier to determine the transmission timing in the active state than in the idle state in which connection is not established, and battery consumption can be suppressed.
- Step S24 The transmission determination means 24 calculates a transmission determination score threshold T [t] at the current time t.
- the transmission decision score threshold function T [t] can be said to be a function that decreases the value as the time t increases.
- the transmission decision score threshold function T [t] may be given in advance from outside the log data collection system.
- the value of the transmission decision score threshold function T [t] at the current time t is calculated.
- the transmission determination unit 24 includes a threshold value calculation unit that calculates a threshold value for permitting transmission of the log data at the current time.
- the threshold value calculation means calculates the threshold value at the current time so as to decrease from the initial value of the threshold value at the start time according to the elapsed time from the start time of the transmission allowable period to the current time, and the current time is transmitted. When it is the end time of the allowable period, the lowest index value is calculated as the threshold value at the current time. Further, it is desirable that the threshold value calculation means decrease the threshold value every time the current time elapses from the start time in at least a part of the transmission allowable period. As a result, it is possible to finely adjust the transmission timing.
- FIG. 8 shows an example of the transmission decision score threshold function T [t].
- the transmission decision score threshold value STH is a constant value from the start time t0 to the time t1, and the transmission decision score threshold value STH monotonously decreases between the time t1 and the log transmission time limit t2, and is transmitted at the log transmission time limit t2.
- the decision score threshold value STH is 0.
- the time t1 can be any time after t0 and before t2.
- Step S25 The transmission determination means 24 compares the transmission determination score S [t] calculated in step S23 with the transmission determination score threshold T [t] calculated in step S24. If the transmission determination score S [t] is greater than or equal to the transmission determination score threshold T [t], the process proceeds to step S26, and otherwise the process ends.
- Step S26 The transmission determination means 24 transmits the log data stored in the terminal device to the log collection server, and ends the process.
- log transmission is performed to a more favorable condition (that is, less background traffic and the terminal communication state is active) by setting the transmission determination score threshold high. Can wait.
- a more favorable condition that is, less background traffic and the terminal communication state is active
- the transmission decision score threshold is gradually reduced (at least maintained) from the initial value, and finally set to 0, thereby minimizing the network load within the log transmission time limit. Effect is obtained.
- the transmission decision score threshold is set to a constant value until a certain point in time, and is linearly decreased from that.
- the transmission decision score threshold function T [t] may have another form, such as a form that decreases linearly throughout the transmission allowable period or a form that exponentially decreases. That is, for example, in the example of FIG. 8, the time t1 may not be provided, and the function may be simply decreased from the start time t0 toward the log transmission time limit t2. Any function such as an exponential function can be applied to the function.
- the slope to be decreased before or after the time t1 may be changed or the function may be changed.
- a plurality of intermediate times corresponding to the time t1 may be set.
- the threshold value may be set to 0 before the log transmission time limit t2 and thereafter set to a constant value. Also, it may be a discontinuous value between the start time t0 and the log transmission time limit t2.
- the transmission decision score threshold value STH is not limited to 0 at least at the start time t0, and may be any value that is equal to or smaller than the previous value every time after that until t2. .
- transmission decision score S [t] and the transmission decision score threshold T [t] do not have to be numerical values.
- any index value can be used as long as it can be expressed by level values such as A, B, and C and can distinguish at least two levels of high and low.
- Terminal device 20 log transmission (log transmission means)
- the log transmission unit 25 transmits the log data 211 accumulated at that time to the log collection server 10 and erases the log data 211 from the storage device 21. To do.
- the log may be compressed before transmission.
- Log collection server 10 Log collection (log collection means)
- the log collecting means 13 receives the log data transmitted from the terminal device 20 in (5) and stores it as log data 141 in the storage device 14. When the log is received in a compressed state, it is stored after being decrypted.
- an HTTP (Hypertext Transfer Protocol) server is operated on the log collection server 10, and the terminal device 20 sends it to the log collection server 10.
- log data is transmitted by the HTTP POST method.
- the embodiment of the present invention it is possible to create a log transmission schedule so that log data is transmitted from many terminal devices in a time zone in which background traffic is predicted to be small.
- the log transmission time from the terminal device can be given a certain width, and can be transmitted preferentially when the background traffic is small or when the terminal device is in the active state.
- the effects of leveling the network load accompanying log data collection and suppressing the battery consumption of the terminal device can be obtained.
- the third embodiment of the present invention shows a minimum configuration of a log data collection system according to the present invention.
- FIG. 11 is a block diagram showing an overall configuration of a log data collection system 3000 according to the third embodiment of the present invention.
- the log data collection system 3000 includes a terminal device 320 that accumulates log data, and a collection device 310 that collects log data from the terminal device 320 via the network N.
- the terminal device 320 includes at least transmission determination means 321.
- the transmission determining unit 321 determines the log data based on the state of the terminal device 320, the state of the network N, and the remaining time of the transmission permissible period within the transmission permissible period which is a time zone in which log data transmission is permitted. Is transmitted to the collection device 310.
- the terminal device 320 can first set the transmission timing of the log data within the allowable transmission time range having a certain time zone width. Therefore, in the log data collection system 3000 according to the third embodiment of the present invention, it is possible to collect log data within the transmission time limit. Further, when determining the transmission timing of log data, the terminal device 320 considers the state of the terminal device 320 at that time, the state of the network N, and the remaining time of the transmission allowable period. Therefore, in the log data collection system 3000 according to the third exemplary embodiment of the present invention, it is possible to level the network load accompanying log data collection.
- Another embodiment of the present invention can be expressed as follows. That is, for each terminal device, a log collection schedule that allows a certain temporal variation is created in advance based on the measurement results of past background traffic, and is distributed to each terminal device. Each terminal device transmits the log data stored in the terminal device to the log collection server according to the log collection schedule.
- the degree of the situation suitable for data transmission is calculated as the log transmission determination score from the state of the terminal device and the network, and the calculated log transmission determination score threshold calculated separately Log data is transmitted when the former is greater than or equal to.
- the log transmission decision score threshold is gradually approached to 0 within the time allowed in the log collection schedule, and if there is time, the log transmission is executed by selecting a situation more suitable for data transmission. . In this way, by determining the log data transmission timing on the terminal device side within the range allowed on the log collection server side, the communication traffic accompanying the log data collection and the load on the terminal device are suppressed, and the communication traffic Time variation can be leveled.
- another embodiment of the present invention can be expressed as follows. That is, in a log data collection system that periodically collects log data from a large number of terminal devices, a log data collection schedule is created reflecting the fluctuations in the past network load, and the log data collection schedule and the terminal state at the time of execution -The network load accompanying log data collection is leveled by determining the timing of log data transmission by each terminal device based on the network state.
- a log data collection system comprising a log collection server and at least one terminal device, and the log collection server is configured so that the total network traffic is leveled for each terminal device based on the measurement results of past background traffic.
- Create a log transmission schedule with log transmission deadline assigned to each terminal device distribute the result to each terminal device, and each terminal device within the range that satisfies the log transmission deadline assigned to itself Log data collection characterized by transmitting log data accumulated in the terminal device to the log collection server at a timing when the log transmission decision score calculated based on the state of the log is equal to or greater than a separately calculated log transmission decision score threshold System.
- the log collection server 10 may be applied to a log collection server that collects log data such as user operation history and sensor measurement results accumulated on a smartphone via a wireless network. it can.
- the present invention can be applied to an information collection server for a sensor network or a machine-to-machine (M2M) network that collects measurement results from a sensor device via a wireless network.
- M2M machine-to-machine
- the present invention is not limited to the above-described embodiments, and various modifications can be made without departing from the gist of the present invention already described.
- the present invention has been described as a hardware configuration, but the present invention is not limited to this.
- the present invention can also realize arbitrary processing by causing a CPU (Central Processing Unit) to execute a computer program.
- the computer program can be stored and supplied to a computer using various types of non-transitory computer readable media.
- Non-transitory computer readable media include various types of tangible storage media (tangible storage medium).
- Examples of non-transitory computer-readable media include magnetic recording media (eg flexible disks, magnetic tapes, hard disk drives), magneto-optical recording media (eg magneto-optical discs), CD-ROMs (Read Only Memory), CD-Rs, CD-R / W, DVD (Digital Versatile Disc), BD (Blu-ray (registered trademark) Disc), semiconductor memory (for example, mask ROM, PROM (Programmable ROM), EPROM (Erasable PROM), flash ROM, RAM ( Random Access Memory)).
- the computer program may also be supplied to the computer by various types of temporary computer readable media. Examples of transitory computer readable media include electrical signals, optical signals, and electromagnetic waves.
- the temporary computer-readable medium can supply the program to the computer via a wired communication path such as an electric wire and an optical fiber, or a wireless communication path.
- a terminal device for storing log data A collection device that collects the log data from the terminal device via a network, The terminal device The collection device collects the log data based on the state of the terminal device, the state of the network, and the remaining time of the transmission allowable period within a transmission allowable period that is a time zone in which the transmission of the log data is allowed.
- a log data collection system comprising a transmission determination means for determining the timing of transmission to a network.
- the transmission determining means includes In the transmission permissible period, the closer the current time is to the start time of the permissible transmission period, the higher priority is given to communication of data other than the log data via the network, and the closer the current time is to the end time of the permissible transmission period,
- the log data collection system according to appendix 1, wherein transmission of the log data to a device is prioritized and timing for transmitting the log data to the collection device is determined.
- the transmission determining means includes Index value calculation means for calculating an index value indicating a degree of suitable transmission of the log data at the current time based on the state of the terminal device and the state of the network; Threshold value calculating means for calculating a threshold value for permitting transmission of the log data at the current time, The terminal device Log transmission means for transmitting the accumulated log data to the collection device when the index value is equal to or greater than the threshold;
- the threshold calculation means includes In accordance with the elapsed time from the start time of the transmission allowable period to the current time, the threshold value at the current time is calculated so as to decrease from the initial value of the threshold value at the start time, The log data collection system according to appendix 1 or 2, wherein when the current time is an end time of the transmission allowable period, the lowest value of the index value is calculated as the threshold value at the current time.
- the log data collection system according to claim 3, wherein the threshold value calculation unit calculates the threshold value by decreasing the current time every time the current time elapses from the start time in at least a part of the transmission allowable period.
- the status of the terminal device includes the type of connection line to which the terminal device is connected to the network, and the status of establishment of connection with the network.
- Appendix 6) The log data collection system according to any one of appendices 1 to 5, wherein the permissible transmission period is determined based on a history of traffic of the network.
- the collector is Based on the history of the network traffic excluding the traffic related to the past transmission of the log data, calculate the transmission allowable period in the terminal device, Transmitting the calculated transmission allowable period to the terminal device;
- the terminal device The log data collection system according to any one of appendices 1 to 6, wherein the transmission determination unit determines a timing for transmitting the log data to the collection device based on the transmission allowable period received from the collection device.
- a storage unit that stores log data and a transmission allowable period that is a time zone in which the transmission of the log data is allowed; Within the permissible transmission period, the timing for transmitting the log data to the collection device connected via the network is determined based on the own state, the state of the network, and the remaining time of the permissible transmission period.
- a transmission decision unit comprising: (Appendix 9) A log data collection method for collecting the log data using a terminal device that accumulates log data and a collection device connected to the terminal device via a network, The terminal device is Timing of transmitting the log data based on the state of the terminal device, the state of the network, and the remaining time of the transmission allowable period within a transmission allowable period that is a time zone in which the transmission of the log data is permitted Decide A log data collection method for transmitting the log data to the collection device at the determined timing.
- the log data is transmitted based on its own state, the state of the network, and the remaining time of the permissible transmission period within the permissible transmission period, which is a time zone in which transmission of the log data stored by itself is permitted.
- the log data collection system includes a terminal device group including the terminal device and other terminal devices, The collector is Based on the network traffic history, calculate a plurality of allowable transmission periods by distributing time zones for each terminal device included in the terminal device group, Send each calculated transmission permissible period to each corresponding terminal device, Each terminal device The log data collection system according to any one of appendices 1 to 7, wherein the transmission determination unit determines a timing for transmitting the log data to the collection device based on the transmission allowable period received from the collection device.
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Data Exchanges In Wide-Area Networks (AREA)
- Debugging And Monitoring (AREA)
Abstract
Description
(1)背景トラフィック(ログデータ収集とは無関係な通信トラフィック)の影響:背景トラフィックとログデータ収集によるログデータ収集トラフィックの合計が全体の通信トラフィックとなる。そのため、通信トラフィックのうちログデータ収集トラフィックの占める割合が低いとしても背景トラフィックの状況によっては、ログデータ送受信が行われることが引き金となって輻輳が発生する可能性がある。
W-CDMAやLTE等の無線ネットワークでは、端末装置と基地局の間でアクティブ状態、アイドル状態などの状態が存在する(具体的な状態名や状態数は無線ネットワークの規格により異なる)。典型的に、データ送受信はアクティブ状態で行われ、それ以外では無線リソースと電力消費の抑制のためにアイドル状態になっている。
(A)端末装置がアイドル状態である場合:アイドル状態からアクティブ状態に遷移(ST)した後で、ログデータを送信する。この状態遷移STに必要な制御信号の送受信による通信トラフィックが発生する。
(B)端末装置がアクティブ状態である場合:状態遷移を伴わずに、端末装置からサーバにログデータを送信する。
したがって、端末装置の無線状態RFSTを考慮せずにログデータを送信すると、(A)の状態である場合には、余分に通信トラフィックが発生する可能性がある。
ログデータを蓄積する端末装置と、
前記端末装置からネットワークを介して前記ログデータを収集する収集装置と、を備え、
前記端末装置は、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記収集装置へ送信するタイミングを決定する送信決定手段を備える。
ログデータと、前記ログデータの送信が許容される時間帯である送信許容期間とを記憶する記憶部と、
前記送信許容期間内で、自身の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記ネットワークを介して接続される収集装置へ送信するタイミングを決定する送信決定部と、
を備える。
ログデータを蓄積する端末装置と、当該端末装置とネットワークを介して接続される収集装置と、を用いて前記ログデータを収集するためのログデータ収集方法であって、
前記端末装置が、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、前記ログデータを送信するタイミングを決定し、
前記決定したタイミングにより前記ログデータを前記収集装置へ送信する。
自身が蓄積するログデータの送信が許容される時間帯である送信許容期間内で、自身の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを送信するタイミングを決定する送信決定処理と、
前記決定したタイミングにより前記ログデータを、前記ネットワークを介して接続された収集装置へ送信する送信処理と、
をコンピュータに実行させる。
図1は、本発明の実施の形態1にかかるログデータ収集システム1000の全体構成を示すブロック図である。ログデータ収集システム1000は、ログデータを蓄積する端末装置200と、端末装置200からネットワークNを介してログデータを収集する収集装置100と、を備える。
本発明の実施の形態2は、上記実施の形態1の応用例である。すなわち、前記送信決定手段は、前記送信許容期間において、現時点が当該送信許容期間の開始時刻に近いほど前記ログデータ以外のデータの前記ネットワークを介した通信を優先し、当該現時点が当該送信許容期間の終了時刻に近いほど前記収集装置への当該ログデータの送信を優先して、前記ログデータを前記収集装置へ送信するタイミングを決定することが望ましい。これにより、ネットワークの負荷に余裕がある場合には、早目にログデータを送信し、一方、万が一、ネットワークの高負荷が継続した場合には他の通信よりもログデータの送信を優先させるため、ネットワーク等の負荷を考慮しつつ、送信期限の制約を満たすことができる。
(1)ログ収集サーバ10:ログ収集スケジュールの生成
以下、図5のフローチャートを参照して、ログ収集サーバ10のスケジュール生成手段11によるログ収集スケジュールの生成手順を示す。以下の手順において、時刻0はログ収集スケジュールの開始時刻、タイムスロットは時刻0からの経過時間を示す。1タイムスロットの長さの一例は1秒であるが、必ずしもそれに限定されない。また、ログ収集スケジュールの生成では、総通信トラフィック上限値Cを事前に決めておく。上限値Cの値は、各タイムスロットにおける背景トラフィック及びログ収集トラフィックの合計値の上限値に相当し、単位の例はGbit/秒である。
背景トラフィックの算出手段の一例は、ログ送信スケジュールの範囲を24時間として、各タイムスロットtと同一時刻についての過去の総トラフィック実測値の平均をTr[t]とするというものである。
S22-1:スケジュール生成手段11は、各タイムスロットtにおける許容トラフィックTr_max[t]を以下の式(1)を用いて算出する。
ここでログ送信期限の決定方法の一例は、事前に各端末装置に振った番号の小さい順に、早いタイムスロットを割り当てるというものである。
送信許容期間の決定方法の一例は、ログ送信周期に一定値をかけることで送信許容期間の長さを算出するというものである。例えば、ログ送信周期をタイムスロット数48、係数を0.1とすると、送信許容期間の長さは48×0.1=4(タイムスロット数、小数点以下切り捨て)となる。この場合、ある端末装置についてログ送信期限がタイムスロットt=10とすると、送信許容期間はタイムスロット7から10の範囲となる。
スケジュール送信手段12は、(1)で生成したログ収集スケジュールを各端末装置に送信する。尚、ログ収集スケジュールの配信方法として、ログ収集サーバ20から端末装置20~2nに送信するほかに、定期的に各端末装置がログ収集サーバ20からログ収集スケジュールを取得する形でも良い。
ログ蓄積手段22は、自身の端末装置におけるアプリケーション起動や位置情報の取得などのイベントを契機として、端末装置が内蔵する記憶装置21に、イベントの内容をログデータ211として蓄積する。
送信決定手段24は、(1)で決定された送信許容期間の範囲内で、端末内に蓄積されたログデータをログ蓄積サーバに送信するタイミングを決定する。ここでは、一定時間ごと(例えば1秒ごと)に以下の処理を行うことにより、その時点でログデータを送信するか否かを決定する。
ステップS21:送信決定手段24は、現在時刻tが、端末装置に設定された送信許容期間の範囲内かどうかを調べる。すなわち、送信決定手段24は、記憶装置21に格納されたログ収集スケジュール212を参照して、現在時刻tが送信許容期間の範囲内か否かを判定する。もし送信許容期間内である場合にはステップS22に進み、それ以外の場合には処理を終了する。
・端末がWi-Fi接続中である場合にはS[t]に“10”を加算する。
・端末が最後に通信してから5秒以内である場合にはS[t]に“3”を加算する。
・端末が現在通信中でない場合はS[t]に“1”を加算する。
ログ送信手段25は、(4)により端末に蓄積したログの送信が決定された場合、その時点で蓄積されたログデータ211をログ収集サーバ10に送信し、記憶装置21からログデータ211を消去する。ここで、送信するデータ量を減らすために、送信前にログを圧縮しても良い。
ログ収集手段13は、(5)で端末装置20から送信されたログデータを受信し、記憶装置14にログデータ141として格納する。ここで、ログを圧縮された状態で受信した場合、復号してから格納する。
本発明の実施の形態3は、本発明にかかるログデータ収集システムの最小構成を示すものである。図11は、本発明の実施の形態3にかかるログデータ収集システム3000の全体構成を示すブロック図である。ログデータ収集システム3000は、ログデータを蓄積する端末装置320と、端末装置320からネットワークNを介してログデータを収集する収集装置310と、を備える。
本発明の他の実施の形態は、次のように表現することができる。すなわち、各端末装置について、過去の背景トラフィックの測定結果に基づき、一定の時間的な変動を許容したログ収集スケジュールを事前に作成し、各端末装置に配布する。各端末装置は、ログ収集スケジュールに従って、端末装置内に蓄積したログデータをログ収集サーバに送信する。ここで、ログデータを送信するタイミングを決定するために、端末装置およびネットワークの状態から、データ送信に適した状況の度合いをログ送信決定スコアとして計算し、別途算出した計算したログ送信決定スコア閾値と比較して、前者の方が大きいか等しい場合にログデータを送信する。ログ送信決定スコア閾値は、ログ収集スケジュール中で許容された時間内において徐々に0に近づけることで、時間に余裕がある場合には、データ送信により適した状況を選択してログ送信を実行する。このように、ログ収集サーバ側で許容した範囲内で、ログデータの送信タイミングを端末装置側で決定することにより、ログデータ収集に伴う通信トラフィックおよび端末装置の負荷を抑制するとともに、通信トラフィックの時間的変動を平準化することできる。
ログデータを蓄積する端末装置と、
前記端末装置からネットワークを介して前記ログデータを収集する収集装置と、を備え、
前記端末装置は、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記収集装置へ送信するタイミングを決定する送信決定手段を備える
ログデータ収集システム。
(付記2)
前記送信決定手段は、
前記送信許容期間において、現時点が当該送信許容期間の開始時刻に近いほど前記ログデータ以外のデータの前記ネットワークを介した通信を優先し、当該現時点が当該送信許容期間の終了時刻に近いほど前記収集装置への当該ログデータの送信を優先して、前記ログデータを前記収集装置へ送信するタイミングを決定する
付記1に記載のログデータ収集システム。
(付記3)
前記送信決定手段は、
前記端末装置の状態及び前記ネットワークの状態に基づいて、現在時刻における前記ログデータの送信が適する度合いを示す指標値を算出する指標値算出手段と、
前記現在時刻における前記ログデータの送信を許可するための閾値を算出する閾値算出手段と、を備え、
前記端末装置は、
前記指標値が前記閾値以上である場合に、前記蓄積されたログデータを前記収集装置へ送信するログ送信手段をさらに備え、
前記閾値算出手段は、
前記送信許容期間の開始時刻から前記現在時刻までの経過時間に応じて、当該開始時刻における前記閾値の初期値から減少させるように前記現在時刻における前記閾値を算出し、
前記現在時刻が前記送信許容期間の終了時刻である場合に、前記指標値の最低値を前記現在時刻における前記閾値として算出する
付記1又は2に記載のログデータ収集システム。
(付記4)
前記閾値算出手段は、前記送信許容期間の少なくとも一部の時間帯において前記開始時刻から前記現在時刻が経過するごとに前記閾値を減少させて算出する
付記3に記載のログデータ収集システム。
(付記5)
前記端末装置の状態は、当該端末装置が前記ネットワークに接続される接続回線の種類、及び、当該ネットワークとの接続の確立の状態を含む
付記1乃至4のいずれか1項に記載のログデータ収集システム。
(付記6)
前記送信許容期間は、前記ネットワークの通信量の履歴に基づき決定されたものである
付記1乃至5のいずれか1項に記載のログデータ収集システム。
(付記7)
前記収集装置は、
過去の前記ログデータの送信に関する通信量を除いた前記ネットワークの通信量の履歴に基づき、前記端末装置における前記送信許容期間を算出し、
前記算出した送信許容期間を前記端末装置に送信し、
前記端末装置は、
前記収集装置から受信した前記送信許容期間に基づいて、前記送信決定手段により前記ログデータを前記収集装置へ送信するタイミングを決定する
付記1乃至6のいずれか1項に記載のログデータ収集システム。
(付記8)
ログデータと、前記ログデータの送信が許容される時間帯である送信許容期間とを記憶する記憶部と、
前記送信許容期間内で、自身の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記ネットワークを介して接続される収集装置へ送信するタイミングを決定する送信決定部と、
を備える端末装置。
(付記9)
ログデータを蓄積する端末装置と、当該端末装置とネットワークを介して接続される収集装置と、を用いて前記ログデータを収集するためのログデータ収集方法であって、
前記端末装置が、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、前記ログデータを送信するタイミングを決定し、
前記決定したタイミングにより前記ログデータを前記収集装置へ送信する
ログデータ収集方法。
(付記10)
自身が蓄積するログデータの送信が許容される時間帯である送信許容期間内で、自身の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを送信するタイミングを決定する送信決定処理と、
前記決定したタイミングにより前記ログデータを、前記ネットワークを介して接続された収集装置へ送信する送信処理と、
をコンピュータに実行させるプログラム。
(付記11)
前記ログデータ収集システムは、前記端末装置及び他の端末装置を含む端末装置群を備え、
前記収集装置は、
前記ネットワークの通信量の履歴に基づき、前記端末装置群に含まれる各端末装置ごとに時間帯を分散させて複数の前記送信許容期間を算出し、
前記算出した各送信許容期間を対応する各端末装置に送信し、
各端末装置は、
前記収集装置から受信した前記送信許容期間に基づいて、前記送信決定手段により前記ログデータを前記収集装置へ送信するタイミングを決定する
付記1乃至7のいずれか1項に記載のログデータ収集システム。
100 収集装置
200 端末装置
210 記憶部
2101 ログデータ
2102 送信許容期間
220 送信決定部
1 ログデータ収集システム
10 ログ収集サーバ
11 スケジュール生成手段
12 スケジュール送信手段
13 ログ収集手段
14 記憶装置
141 ログデータ
20 端末装置
21 記憶装置
211 ログデータ
212 ログ収集スケジュール
213 送信決定スコア
214 送信決定スコア閾値関数
215 送信決定スコア閾値
22 ログ蓄積手段
23 スケジュール受信手段
24 送信決定手段
25 ログ送信手段
2n 端末装置
N ネットワーク
LSC ログ送信周期
P11 送信許容期間
P12 送信許容期間
P21 送信許容期間
P22 送信許容期間
P31 送信許容期間
P32 送信許容期間
P41 送信許容期間
P42 送信許容期間
L11 ログ送信期限
L12 ログ送信期限
t0 開始時刻
t1 時刻
t2 ログ送信期限
TR1 通信トラフィック(背景トラフィック+ログデータ収集トラフィック)
TR2 背景トラフィック
CN 輻輳
TRL トラフィック限界
RFST 無線状態
ST 状態遷移
P 送信許容期間
STH 送信決定スコア閾値
3000 ログデータ収集システム
310 収集装置
320 端末装置
321 送信決定手段
Claims (10)
- ログデータを蓄積する端末装置と、
前記端末装置からネットワークを介して前記ログデータを収集する収集装置と、を備え、
前記端末装置は、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記収集装置へ送信するタイミングを決定する送信決定手段を備える
ログデータ収集システム。 - 前記送信決定手段は、
前記送信許容期間において、現時点が当該送信許容期間の開始時刻に近いほど前記ログデータ以外のデータの前記ネットワークを介した通信を優先し、当該現時点が当該送信許容期間の終了時刻に近いほど前記収集装置への当該ログデータの送信を優先して、前記ログデータを前記収集装置へ送信するタイミングを決定する
請求項1に記載のログデータ収集システム。 - 前記送信決定手段は、
前記端末装置の状態及び前記ネットワークの状態に基づいて、現在時刻における前記ログデータの送信が適する度合いを示す指標値を算出する指標値算出手段と、
前記現在時刻における前記ログデータの送信を許可するための閾値を算出する閾値算出手段と、を備え、
前記端末装置は、
前記指標値が前記閾値以上である場合に、前記蓄積されたログデータを前記収集装置へ送信するログ送信手段をさらに備え、
前記閾値算出手段は、
前記送信許容期間の開始時刻から前記現在時刻までの経過時間に応じて、当該開始時刻における前記閾値の初期値から減少させるように前記現在時刻における前記閾値を算出し、
前記現在時刻が前記送信許容期間の終了時刻である場合に、前記指標値の最低値を前記現在時刻における前記閾値として算出する
請求項1又は2に記載のログデータ収集システム。 - 前記閾値算出手段は、前記送信許容期間の少なくとも一部の時間帯において前記開始時刻から前記現在時刻が経過するごとに前記閾値を減少させて算出する
請求項3に記載のログデータ収集システム。 - 前記端末装置の状態は、当該端末装置が前記ネットワークに接続される接続回線の種類、及び、当該ネットワークとの接続の確立の状態を含む
請求項1乃至4のいずれか1項に記載のログデータ収集システム。 - 前記送信許容期間は、前記ネットワークの通信量の履歴に基づき決定されたものである
請求項1乃至5のいずれか1項に記載のログデータ収集システム。 - 前記収集装置は、
過去の前記ログデータの送信に関する通信量を除いた前記ネットワークの通信量の履歴に基づき、前記端末装置における前記送信許容期間を算出し、
前記算出した送信許容期間を前記端末装置に送信し、
前記端末装置は、
前記収集装置から受信した前記送信許容期間に基づいて、前記送信決定手段により前記ログデータを前記収集装置へ送信するタイミングを決定する
請求項1乃至6のいずれか1項に記載のログデータ収集システム。 - ログデータと、前記ログデータの送信が許容される時間帯である送信許容期間とを記憶する記憶手段と、
前記送信許容期間内で、自身の状態、ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを前記ネットワークを介して接続される収集装置へ送信するタイミングを決定する送信決定手段と、
を備える端末装置。 - ログデータを蓄積する端末装置と、当該端末装置とネットワークを介して接続される収集装置と、を用いて前記ログデータを収集するためのログデータ収集方法であって、
前記端末装置が、
前記ログデータの送信が許容される時間帯である送信許容期間内で、当該端末装置の状態、当該ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、前記ログデータを送信するタイミングを決定し、
前記決定したタイミングにより前記ログデータを前記収集装置へ送信する
ログデータ収集方法。 - 自身が蓄積するログデータの送信が許容される時間帯である送信許容期間内で、自身の状態、ネットワークの状態、及び、当該送信許容期間の残り時間に基づいて、当該ログデータを送信するタイミングを決定する送信決定処理と、
前記決定したタイミングにより前記ログデータを、前記ネットワークを介して接続された収集装置へ送信する送信処理と、
をコンピュータに実行させるプログラムが格納された非一時的なコンピュータ可読媒体。
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2015557584A JP6083476B2 (ja) | 2014-01-15 | 2014-09-17 | ログデータ収集システム、端末装置及びログデータ収集方法 |
US15/111,428 US10135672B2 (en) | 2014-01-15 | 2014-09-17 | Log data collection system, terminal device, and log data collection method |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2014-004920 | 2014-01-15 | ||
JP2014004920 | 2014-01-15 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2015107574A1 true WO2015107574A1 (ja) | 2015-07-23 |
Family
ID=53542503
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2014/004762 WO2015107574A1 (ja) | 2014-01-15 | 2014-09-17 | ログデータ収集システム、端末装置及びログデータ収集方法 |
Country Status (3)
Country | Link |
---|---|
US (1) | US10135672B2 (ja) |
JP (1) | JP6083476B2 (ja) |
WO (1) | WO2015107574A1 (ja) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2018097527A (ja) * | 2016-12-12 | 2018-06-21 | 富士通株式会社 | 情報処理装置、情報処理方法及び情報処理プログラム |
JP2019053565A (ja) * | 2017-09-15 | 2019-04-04 | ファナック株式会社 | データ収集装置、データ転送装置、データ収集システム、データ収集プログラム及びデータ転送プログラム |
US10712973B2 (en) | 2018-03-16 | 2020-07-14 | Fujitsu Limited | Storage management apparatus, storage system, and non-transitory computer-readable recording medium having stored therein storage management program |
CN114095346A (zh) * | 2020-08-04 | 2022-02-25 | 深圳云里物里科技股份有限公司 | 日志收集方法及系统 |
Families Citing this family (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP6244998B2 (ja) * | 2014-03-11 | 2017-12-13 | 富士通株式会社 | 情報通信方法及び情報処理装置 |
JP2017107357A (ja) * | 2015-12-09 | 2017-06-15 | セイコーエプソン株式会社 | 制御装置、制御装置の制御方法、サーバー、及び、ネットワークシステム |
JP6851952B2 (ja) * | 2017-10-24 | 2021-03-31 | 株式会社日立製作所 | データ収集装置及びデータ収集方法 |
CN108959029A (zh) * | 2018-06-29 | 2018-12-07 | 深圳市同泰怡信息技术有限公司 | 收集和报告服务器异常日志的方法及系统 |
CN111478789A (zh) * | 2020-03-02 | 2020-07-31 | 深圳市创维群欣安防科技股份有限公司 | 一种日志采集方法、系统、终端、服务器及存储介质 |
CN114500582A (zh) * | 2022-02-11 | 2022-05-13 | 浙江大华技术股份有限公司 | 日志的采集方法、装置、存储介质及电子装置 |
CN114500254B (zh) * | 2022-02-16 | 2023-08-22 | 平安科技(深圳)有限公司 | 历史日志收集方法、装置与存储介质 |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2000029743A (ja) * | 1998-07-15 | 2000-01-28 | Fujitsu Ltd | 定期接続自動予約システム、遠隔保守システム及びそれらのプログラム記憶媒体 |
JP2008113266A (ja) * | 2006-10-31 | 2008-05-15 | Fuji Xerox Co Ltd | 情報処理装置及びプログラム、画像履歴管理装置及びプログラム、及び画像履歴管理システム |
JP2012118876A (ja) * | 2010-12-02 | 2012-06-21 | Ntt Docomo Inc | 端末ログ利用システム及び端末ログ利用システムの制御方法 |
Family Cites Families (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6501765B1 (en) * | 1998-09-01 | 2002-12-31 | At&T Corp. | Distributed method and apparatus for allocating a communication medium |
JP2001306511A (ja) | 2000-04-25 | 2001-11-02 | Pfu Ltd | マシン情報の収集方法およびマシン情報の収集装置ならびにその記録媒体 |
JP2002259236A (ja) | 2001-02-28 | 2002-09-13 | Hitachi Ltd | 分散型制御システムと、かかるシステムにおける異常時データ収集方法 |
EP1450528B1 (en) * | 2002-04-19 | 2006-10-04 | Yamaha Corporation | Communication management apparatus |
CN1729671A (zh) * | 2002-12-20 | 2006-02-01 | 松下电器产业株式会社 | 内容历史日志收集系统、终端设备以及服务器设备 |
US9065595B2 (en) * | 2005-04-07 | 2015-06-23 | Opanga Networks, Inc. | System and method for peak flow detection in a communication network |
JP2008217118A (ja) | 2007-02-28 | 2008-09-18 | Mitsubishi Electric Corp | ログファイル管理装置及びログファイル送信装置及びログファイル管理方法及びログファイル送信方法及びプログラム |
US8942771B1 (en) * | 2010-11-02 | 2015-01-27 | Google Inc. | Dynamic data refresh for mobile device applications |
US20140181257A1 (en) * | 2012-12-20 | 2014-06-26 | Alcatel-Lucent Usa Inc. | Methods and systems for loading content in a network |
-
2014
- 2014-09-17 JP JP2015557584A patent/JP6083476B2/ja not_active Expired - Fee Related
- 2014-09-17 US US15/111,428 patent/US10135672B2/en active Active
- 2014-09-17 WO PCT/JP2014/004762 patent/WO2015107574A1/ja active Application Filing
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2000029743A (ja) * | 1998-07-15 | 2000-01-28 | Fujitsu Ltd | 定期接続自動予約システム、遠隔保守システム及びそれらのプログラム記憶媒体 |
JP2008113266A (ja) * | 2006-10-31 | 2008-05-15 | Fuji Xerox Co Ltd | 情報処理装置及びプログラム、画像履歴管理装置及びプログラム、及び画像履歴管理システム |
JP2012118876A (ja) * | 2010-12-02 | 2012-06-21 | Ntt Docomo Inc | 端末ログ利用システム及び端末ログ利用システムの制御方法 |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2018097527A (ja) * | 2016-12-12 | 2018-06-21 | 富士通株式会社 | 情報処理装置、情報処理方法及び情報処理プログラム |
US11099041B2 (en) | 2016-12-12 | 2021-08-24 | Fujitsu Limited | Information processing device and information processing method |
JP2019053565A (ja) * | 2017-09-15 | 2019-04-04 | ファナック株式会社 | データ収集装置、データ転送装置、データ収集システム、データ収集プログラム及びデータ転送プログラム |
US10712973B2 (en) | 2018-03-16 | 2020-07-14 | Fujitsu Limited | Storage management apparatus, storage system, and non-transitory computer-readable recording medium having stored therein storage management program |
CN114095346A (zh) * | 2020-08-04 | 2022-02-25 | 深圳云里物里科技股份有限公司 | 日志收集方法及系统 |
CN114095346B (zh) * | 2020-08-04 | 2024-08-02 | 深圳云里物里科技股份有限公司 | 日志收集方法及系统 |
Also Published As
Publication number | Publication date |
---|---|
US10135672B2 (en) | 2018-11-20 |
JPWO2015107574A1 (ja) | 2017-03-23 |
US20160337167A1 (en) | 2016-11-17 |
JP6083476B2 (ja) | 2017-02-22 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
JP6083476B2 (ja) | ログデータ収集システム、端末装置及びログデータ収集方法 | |
JP5404936B2 (ja) | 通信装置 | |
JP2014503165A (ja) | セルラーネットワークにおけるピアツーピアトラフィックをスケジューリングするための方法および装置 | |
JP2012044515A (ja) | 無線端末 | |
JP2016519918A (ja) | ネットワークシグナリングノードにおいてエネルギーリソースを割り当てる方法 | |
CN102970250A (zh) | 分布式路由器系统中的带宽分配方法和装置、网络设备 | |
US20240283744A1 (en) | Controlling data rate based on domain and radio usage history | |
JP6468193B2 (ja) | 通信装置及び通信装置におけるネットワーク利用可能帯域推定方法、並びにネットワーク利用可能帯域推定プログラム | |
JP4876100B2 (ja) | 基地局装置及び方法 | |
JP6090471B2 (ja) | 通信システム、共通サービス制御装置、データ送信方法及びプログラム | |
WO2016110899A1 (ja) | 監視装置、無線通信装置、通信システム、回線使用率算出方法、データ送信方法、監視方法及びコンピュータ可読媒体 | |
JP6065114B2 (ja) | プッシュ型情報送信装置、プッシュ型情報送信方法及びプログラム | |
JP5839999B2 (ja) | 通信端末装置 | |
JP2014112779A (ja) | データ送信制御装置、データ送信制御方法、および、コンピュータ・プログラム | |
JP2015050714A (ja) | 無線基地局、無線基地局の制御方法及び制御プログラム | |
JP5550119B2 (ja) | すき間通信方法およびその無線端末 | |
CN105119693A (zh) | 在非授权频谱中设置mcs的方法及装置 | |
JPWO2006006208A1 (ja) | 無線基地局 | |
JP2016005046A (ja) | 通信制御装置、通信制御システム及び通信制御方法 | |
CN114339863B (zh) | 上行数据的传输方法、装置、存储介质及电子装置 | |
JP2017131070A (ja) | 管理サーバ及び管理方法 | |
US20200236024A1 (en) | Data communication apparatus, communication system, data communication method, and program | |
Choi et al. | Video Placements and Dynamic Streaming Services in Wireless Caching Networks | |
JP2016144055A (ja) | 通信装置、通信システム、制御方法及び通信プログラム | |
JP2020178294A (ja) | 基地局、通信状況情報出力方法、および通信状況情報出力プログラム |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 14879104 Country of ref document: EP Kind code of ref document: A1 |
|
ENP | Entry into the national phase |
Ref document number: 2015557584 Country of ref document: JP Kind code of ref document: A |
|
WWE | Wipo information: entry into national phase |
Ref document number: 15111428 Country of ref document: US |
|
NENP | Non-entry into the national phase |
Ref country code: DE |
|
122 | Ep: pct application non-entry in european phase |
Ref document number: 14879104 Country of ref document: EP Kind code of ref document: A1 |