WO2006077977A1 - バックアップシステム、中継装置、情報端末、バックアップ装置 - Google Patents
バックアップシステム、中継装置、情報端末、バックアップ装置 Download PDFInfo
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- WO2006077977A1 WO2006077977A1 PCT/JP2006/300868 JP2006300868W WO2006077977A1 WO 2006077977 A1 WO2006077977 A1 WO 2006077977A1 JP 2006300868 W JP2006300868 W JP 2006300868W WO 2006077977 A1 WO2006077977 A1 WO 2006077977A1
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- WIPO (PCT)
- Prior art keywords
- transfer
- data
- transfer data
- information
- backup
- Prior art date
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Classifications
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F11/00—Error detection; Error correction; Monitoring
- G06F11/07—Responding to the occurrence of a fault, e.g. fault tolerance
- G06F11/14—Error detection or correction of the data by redundancy in operation
- G06F11/1402—Saving, restoring, recovering or retrying
- G06F11/1446—Point-in-time backing up or restoration of persistent data
- G06F11/1458—Management of the backup or restore process
- G06F11/1464—Management of the backup or restore process for networked environments
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F11/00—Error detection; Error correction; Monitoring
- G06F11/07—Responding to the occurrence of a fault, e.g. fault tolerance
- G06F11/14—Error detection or correction of the data by redundancy in operation
- G06F11/1402—Saving, restoring, recovering or retrying
- G06F11/1446—Point-in-time backing up or restoration of persistent data
- G06F11/1448—Management of the data involved in backup or backup restore
- G06F11/1451—Management of the data involved in backup or backup restore by selection of backup contents
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F11/00—Error detection; Error correction; Monitoring
- G06F11/07—Responding to the occurrence of a fault, e.g. fault tolerance
- G06F11/14—Error detection or correction of the data by redundancy in operation
- G06F11/1402—Saving, restoring, recovering or retrying
- G06F11/1446—Point-in-time backing up or restoration of persistent data
- G06F11/1456—Hardware arrangements for backup
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- 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
- H04L67/2866—Architectures; Arrangements
- H04L67/289—Intermediate processing functionally located close to the data consumer application, e.g. in same machine, in same home or in same sub-network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2250/00—Details of telephonic subscriber devices
- H04M2250/64—Details of telephonic subscriber devices file transfer between terminals
Definitions
- Knock-up system relay device, information terminal, backup device
- the present invention relates to backup of data stored in a mobile communication device such as a mobile phone.
- Mobile communication devices such as mobile phones continue to strengthen their functions such as processing capability and communication performance year by year. As functions are improved, various processes can be performed, and as a result, the usage forms of mobile communication devices by users have become diverse. Specifically, for example, using a camera-equipped mobile phone that is easy to carry, you can take pictures of users, parents, and people together with the scenery on the land where you are traveling, so that you can view them at any time. For example, data such as stored images and moving images can be exchanged between users using communication technology such as infrared communication. As a result, the data that the user voluntarily acquires in this way often reflects the user's personal relationships and the user's own preferences. Therefore, it is often high and valuable for people who are involved in data.
- Patent Document 1 and Patent Document 2 described below disclose a technique for moving data stored in a mobile phone to a server or the like in a home while charging the mobile phone.
- Patent Document 3 the data size is compared with image data, moving image data, or the like.
- a technology for transmitting / receiving data to / from a backup center using a telephone line is disclosed on the assumption that text-based data such as an address book is backed up.
- Patent Document 1 Japanese Patent Publication No. 2003-347988
- Patent Document 2 Japanese Patent Publication No. 2002-33798
- Patent Document 3 Japanese Patent Publication No. 2000-78070
- the router or the like is usually responsible for determining what route in the network is used to transfer the data, the user who is the sender of the data predicts the route through which the transmission data passes. Often difficult. [0008] Therefore, it is difficult for the user to predict who the transmission data will see, and as a result, the user may feel resistance to transmitting data including private information via the network. .
- the present invention provides a case where a mobile communication device such as a mobile phone cannot directly communicate with a backup device, or a communication line with a knock-up device has a large amount of data.
- the purpose is to provide a backup system and a knock-up method that allow users to perform backups with peace of mind and ease even if the communication speed is not sufficient to transmit .
- the present invention provides a backup system for performing backup by transferring transfer data transmitted from an information terminal to a backup device via relaying by one or more relay devices.
- the information terminal indicates a condition to be satisfied by the storage means for storing the transfer data to be subjected to the knock-up, the transfer data, and the relay device that relays the transfer data, and conditions for protection of the transfer data.
- Communication means for transmitting transfer condition information including the information to the relay device, the relay device corresponding to the device information storage means for storing device information relating to the transfer destination device, the transfer data, and the transfer data.
- the received transfer condition information is A transfer control unit that controls transfer of received transfer data according to the selection, and the backup server transfers the transfer data transferred by the relay device.
- the relay device that relays the transfer of the transfer data transmitted from the information terminal to the backup device is A device related to a transfer destination device that is a transfer destination candidate for transfer data
- a transfer control unit that selects a transfer destination device that satisfies the condition indicated by the received transfer condition information from among the transfer destination devices indicated by the device information, and controls transfer of the received transfer data according to the selection It is provided with these.
- the information terminal that transmits the transfer data to the backup device via one or more relay devices that relay the transfer data transmits the transfer data to be backed up.
- the relay device having the above-described configuration receives the transfer condition information together with the transfer data, selects the transfer device as the transfer destination based on the transfer condition information, and transfers the transfer data.
- the transfer process can be executed while protecting the data. In other words, the user can transmit the data to be backed up while placing restrictions on the protection of the transfer data for the transfer path relayed by the relay device.
- the user can reduce the risk of privacy being violated when performing the knock-up, and can thereby perform the backup with peace of mind.
- the condition indicated by the transfer condition information is that the transfer destination device is not included in the black list indicating the transfer destination device that does not permit the transfer, and the transfer control means is indicated in the black list. A device that has not been selected is selected as the transfer destination device That's fine.
- the device information storage means stores a reliability value indicating the reliability of each of the transfer destination devices, and the transfer condition information is information indicating a threshold value of a reliability value that the transfer destination device should satisfy,
- the transfer control means may select a device that satisfies a reliability threshold value indicated by the transfer condition information as the transfer destination device.
- the transfer path is restricted using one value, which is a reliability threshold, without determining whether transfer is possible or not for each transfer destination device. Therefore, protection of transfer data can be realized by a simple method.
- the user can flexibly determine the restriction on the data transfer path according to the data to be transmitted by determining the reliability threshold value according to the data to be transmitted and transmitting it as the transfer condition information.
- the transfer route restriction based on the trust threshold is strengthened so that the data is relayed only by a device exhibiting high trustworthiness.
- data that is publicly known, such as photographs that are mainly public is transmitted with little disadvantage to the user, it can also be transferred by a relay device with low creditworthiness.
- the transfer control means further includes a processing unit that performs a predetermined processing on the transfer data, and performs the processing on the received transfer data and then transfers it to the transfer destination device. It is also possible to control to do so.
- transfer processing can be executed with further enhanced protection of transfer data.
- the transfer control means when the transfer destination device indicated in the device information does not satisfy the condition indicated in the transfer condition information, the processing by the calorie processing unit for the received transfer data. Execute the process !, and control to transfer the processed transfer data to the transfer destination device.
- the predetermined processing is performed only when the transfer data is transferred to the transfer destination device that does not satisfy the predetermined condition regarding transfer data protection.
- Data processing can be performed, and predetermined processing can be efficiently executed depending on whether the reliability of the transfer destination device is high or low with respect to transfer data protection.
- processing performed by the processing unit may be inserting the identification information of the relay device as a watermark into the transfer data.
- the transfer data may be unnecessarily exposed when something happens to the relay device, such as a malfunction.
- the backup is not complete, the user will not be able to confirm the power of the backup, and will be anxious. It is.
- the receiving means further receives at least one of the transfer data reception deadline by the backup device, the transfer data custody deadline by the relay device, or the transfer data erasure deadline.
- the relay device when receiving the reception deadline, performs the control by the transfer control means so that the corresponding transfer data is received by the backup device before the reception deadline arrives.
- the custody deadline is received
- the corresponding transfer data is held until the custody deadline arrives.
- the erasure deadline is received, the corresponding transfer data is erased when the erasure deadline comes. As a matter of fact.
- the relay apparatus further creates exchange information indicating that the transfer data received by the receiving means is held in the relay apparatus, and exchange information transmitting means for transmitting the created exchange information; and Transfer request receiving means for receiving a transfer request for the transfer data corresponding to the exchange information from another device that has received the exchange information.
- the transfer control unit may control to transfer the transfer data that works on the transfer request to another device.
- the backup device of the present invention that receives backup data via the relay device described above includes exchange information receiving means for receiving the exchange information from another device, and the transfer data indicated by the received exchange information.
- Transfer request transmission means for transmitting a transfer request for the transfer data to the holding relay device, backup data reception means for receiving the transfer data according to the transmitted transfer request, and storing the received transfer data It is good also as providing the knockup data storage means to do.
- the relay device having the above-described configuration accepts a transfer request from another device such as a backup device that has received each identification information and controls transfer of transfer data, the other device that has received each identification information If necessary, the relay device can be queried for data to be backed up.
- the backup method described above is to back up the data of the information terminal via the relay device, but the relay device holds the data transmitted from the information terminal or performs processing for relaying. For this reason, relay device resources are consumed for knock-up. In other words, if the relay device side forces, the processing capacity is unilaterally used to back up information terminal data.
- the communication means further transmits the first transmission / reception condition information regarding the transfer data to the relay device before transmitting the transfer data to the relay device, and the second transmission / reception from the relay device.
- the information terminal receives the condition information, and the information terminal receives the first transmission / reception condition information based on the first transmission / reception condition information transmitted by the communication means and the received second transmission / reception condition information.
- the communication means transmits the transfer data to the relay device when the determination means makes an affirmative determination.
- the information terminal exchanges transmission / reception condition information with the relay device, and determines whether or not transmission of the transfer data is possible based on the mutual transmission / reception condition information. Therefore, the information terminal and the relay device The execution of backup can be controlled when mutually agreed upon.
- the first transmission / reception condition information is transmission transfer data transmitted by the information terminal.
- the second transmission / reception condition information is associated with the received transfer data received from the relay device, and the communication means, when the determination means makes a positive determination, The transmission transfer data may be transmitted to the relay device, the reception transfer data may be received from the relay device, and the storage unit may store the received reception transfer data.
- the information terminal having the above-described configuration stores the data to be transmitted when the data to be knocked up is transmitted. Backup can be performed fairly with relay devices that do not use the network.
- the first and second transmission / reception condition information includes a data size of the transfer data, a retention period for retaining the transfer data in the relay device or the information terminal, and a recording method for recording the transfer data on a retention medium. And at least one incentive to hold the transfer data.
- the incentive includes at least one of value information having a monetary value, relay device control information indicating a right to allow the relay device to perform a predetermined process, and viewing right information indicating a right to view predetermined content. May be included.
- the storage unit of the information terminal further stores relay device information related to a relay device that is a transmission data transmission destination candidate, and the communication unit transfers the transfer data from among the relay devices indicated by the relay device information. It is also possible to select a destination device that satisfies the conditions indicated by the transfer condition information relating to the data, and to control the transmission of the transfer data and the transfer condition information according to the selection.
- the information terminal can control transmission of the transfer data to the relay device according to whether or not the protection of the transfer data can be realized. Isa can be backed up with confidence.
- the present invention is an integrated circuit used in an information terminal that transmits the transfer data to a backup device via one or more relay devices that relay the transfer data, and stores the transfer data to be backed up And a communication unit that transmits the transfer data and transfer condition information that indicates conditions to be satisfied by the relay device that relays the transfer data and that includes conditions relating to protection of the transfer data. It may be an integrated circuit.
- the present invention provides a process of transmitting the transfer data to a backup device via relay by one or more relay devices to an information terminal storing transfer data to be subjected to knock-up.
- a program to be executed including a communication step for indicating transfer data and a condition to be satisfied by a relay device that relays the transfer data, and transmitting transfer condition information including a condition regarding protection of the transfer data. Even if it is a program.
- the present invention is a backup method for performing backup by transferring transfer data transmitted from an information terminal to a backup device via a relay by one or more relay devices, in the information terminal
- the processing to be performed shows the storage step for storing the transfer data to be knocked up, the transfer data, and the conditions to be satisfied by the relay device that relays the transfer data.
- the processing performed in the backup server includes a backup data reception step for receiving the transfer data transferred by the relay device and a knock-up data storage step for storing the received transfer data. It may be a knock-up method characterized by that.
- the present invention is a backup method performed using the first and second information terminals, and the processing performed in the first and second information terminals includes a transfer subject to knock-up execution.
- the communication step in the first information terminal before transmitting the first transfer data to the second information terminal, the first transmission / reception condition information regarding the first transfer data is transmitted to the second information terminal.
- Transmitting the second transmission / reception condition information from the second information terminal, and the communication step in the second information terminal includes a second step before transmitting the second transfer data to the first information terminal.
- Transmission / reception condition information is transmitted to the first information terminal, first transmission / reception condition information is received from the first information terminal, and processing performed in the first and second information terminals includes transmission / reception in the communication step.
- the backup method may be characterized by transmitting the second transfer data to the first information terminal.
- FIG. 1 is a diagram showing an outline of a backup system 1000 in Embodiment 1 of the present invention.
- FIG. 2 is a functional block diagram of mobile phone 100.
- FIG. 3 is a functional block diagram of mobile phone 200.
- FIG. 4 is a functional block diagram of a backup server 300.
- FIG. 5 is a functional block diagram of a backup server 900.
- FIG. 6 is a diagram showing transfer condition information 600.
- FIG. 7 shows a confidence threshold table 700.
- FIG. 8 is a flowchart showing the operation of the information terminal.
- FIG. 9 is a flowchart showing the operation of the relay device.
- FIG. 10 is a flowchart showing the operation of the backup device.
- FIG. 11 is a diagram showing an outline of a backup system 2000 according to the second embodiment of the present invention.
- FIG. 12 is a functional block diagram of mobile phone 210 according to the second embodiment.
- FIG. 13 shows exchange information 1300.
- FIG. 14 is a flowchart showing the operation of the relay device in the second embodiment.
- FIG. 15 is a functional block diagram of a mobile phone 500 having a function of performing backup mutually.
- FIG. 16 is a diagram showing transmission / reception condition information.
- FIG. 17 is a flowchart showing a mutual backup control operation performed by the information terminal with another apparatus.
- the information terminal stores the information terminal.
- the data to be backed up is transmitted to the backup device via the relay device that relays the knock-up.
- a mobile phone is assumed as the information terminal.
- a mobile phone can use another mobile phone to knock up the data stored in the mobile phone to the backup device used by the user of the mobile phone.
- Backup data transfer is relayed by a backup device used by a telephone or other mobile phone user.
- the data to be knocked up is, for example, image or moving image data acquired using the camera function of the mobile phone. This will be described in detail below.
- FIG. 1 is a diagram showing an outline of the backup system 1000 according to the first embodiment of the present invention.
- the backup system 1000 includes a mobile phone 100 that is an information terminal that transmits data to be backed up to the backup device, and a mobile phone that is a relay device that relays transfer of the data to be backed up. 200, a knock-up server 300, a mobile phone 201, a knock-up server 301, and a backup server 900 that is a backup device for backing up data of the mobile phone 100.
- Mobile phone 100 and mobile phone 200 are connected via communication path 20.
- the mobile phone 200 and the backup server 300 are connected via a communication path 30, and the backup server 300 and the backup server 900 are connected via a communication path 90.
- the mobile phone 100 and the mobile phone 201 are connected via a communication path 21, the mobile phone 201 and the backup server 301 are connected via a communication path 31, and the backup server 301 and the backup server 900 are connected via a communication path 91.
- the backup situation assumed in the first embodiment is as follows. First, as a premise, the user 1 who is a user of the mobile phone 100 normally connects the mobile phone 100 to the backup server 900 at home and executes backup when returning home. As the knock-up method at this time, for example, a method of transmitting backup data to the backup server 900 when the mobile phone 100 is installed in a charger is used as in the technique described in Patent Document 1 or 2. It is assumed that knock-up server 900 is connected to an external network.
- the backup server 900 is used. It becomes difficult to perform backup.
- User 1 communicates with the mobile phone 200 owned by User 2 who is traveling.
- the data to be backed up is deposited via 20.
- USB Universal Serial Bus
- WLAN Local Area Network
- UWB Ultra Wideband
- Wide band Wide band
- PAN Personal Area Network
- wired connection handing using external media such as recording media, etc.
- the mobile phone 200 when the user 2 stores the knock-up data of the mobile phone 100 by the mobile phone 200, when the user 2 returns home to the user 2, the mobile phone 200 is connected to the backup server 300 that is the backup device of the user 2. Then, the data stored in the mobile phone 100 together with the backup data of the mobile phone 200 is transmitted to the backup server 300 via the communication path 30.
- the backup server 300 is connected to the network, and similarly transmits the knock-up data of the mobile phone 100 to the backup server 900 connected to the network via the communication path 90.
- the communication path 90 is, for example, broadband communication using an optical fiber or the like, and is a communication path capable of transferring data at a relatively high speed. Broadband communication has widened the communication bandwidth, and in recent years, flat-rate services are provided by telecommunications carriers such as ISP (Internet Services Provider). The burden is small.
- the backup server 900 receives and records the backup data of the mobile phone 100 transmitted from the backup server 300 via the communication path 90.
- the user 1 can perform backup using the relay by each relay device via the communication path 20, the communication path 30, and the communication path 90.
- the information terminal As described above, in the first embodiment, the information end Assuming that mobile phone 100 is the end.
- the mobile phone 200 is assumed to be a backup server 300 as a relay device, and the backup server 900 is assumed as a backup device.
- FIG. 2 is a functional block diagram of the mobile phone 100.
- the mobile phone 100 as an information terminal includes an image acquisition unit 11, a storage unit 12, a backup image selection unit 13, a transfer condition information setting unit 14, a backup information generation unit 15, A transmission destination selection unit 16, a transmission destination authentication unit 17, and a transmission unit 18 are included.
- the above components consist of a control circuit consisting of a CPU (Central Processing Unit), ROM (Read Only Memory), RAM (Random Access Memory), etc., and a transmission / reception circuit that transmits and receives data, and is backed up according to a program. Execute. The function of each component is described below.
- the image acquisition unit 11 is a camera module or the like that realizes the camera function of the mobile phone 100, and acquires data such as still images and moving images.
- the storage unit 12 stores the data acquired by the image acquisition unit 11 using a storage medium such as a memory or an HDD (Hard Disk Drive).
- a storage medium such as a memory or an HDD (Hard Disk Drive).
- the knock-up image selection unit 13 selects data to be backed up from the storage unit 12 using transfer by the relay device.
- the transfer condition information setting unit 14 sets transfer condition information to be described later.
- the knock-up information generation unit 15 generates data to be transmitted by adding transfer condition information or the like to the transfer data that is the data selected by the knock-up image selection unit 13.
- the transmission destination selection unit 16 selects a communication destination device with which the mobile phone 100 can directly connect and communicate via a communication path.
- the transmission destination authentication unit 17 authenticates a communication destination device that is a transmission destination for transmitting data.
- the transmission unit 18 transmits data to the communication destination device.
- FIG. 3 is a functional block diagram of the mobile phone 200.
- the mobile phone 200 includes a reception source authentication unit 21, a reception unit 22, a storage unit 23, a control unit 24, a transmission destination selection unit 25, and a transmission destination authentication unit 26. , And a transmission unit 27.
- the above-described components are composed of a control circuit that also has a CPU, ROM, RAM, and the like, a transmission / reception circuit that transmits and receives data, and executes transfer processing that relays transmission data and transfers it to other devices according to a program.
- a control circuit that also has a CPU, ROM, RAM, and the like, a transmission / reception circuit that transmits and receives data, and executes transfer processing that relays transmission data and transfers it to other devices according to a program.
- transfer processing that relays transmission data and transfers it to other devices according to a program.
- the reception source authenticating unit 21 authenticates the reception source device as the communication partner.
- the receiving unit 22 receives data via the communication path.
- the storage unit 23 stores the received data using a memory, HDD, or the like.
- the control unit 24 controls data transmission processing to the transfer destination device.
- the transmission destination selection unit 25 selects a transfer destination device with which the mobile phone 200 can directly connect and communicate via a communication path.
- the transmission destination authentication unit 26 authenticates the transfer destination device to which the transfer data is transferred. Any authentication method may be used between devices. In this embodiment, for example, a known authentication method such as a challenge-response method is used. The same applies to authentication methods performed by other devices.
- the transmission unit 27 transmits data to the transfer destination device.
- FIG. 4 is a functional block diagram of the backup server 300.
- Backup server 300
- the mobile phone 200 has almost the same configuration.
- the backup server 300 includes a reception source authentication unit 31, a reception unit 32, a storage unit 33, a control unit 34, a transmission destination selection unit 35, a transmission destination authentication unit 36, and a transmission unit. 37.
- each of the above-described components exhibits the same function as each component of mobile phone 200. That is, similar to the reception source authentication unit 21, the reception source authentication unit 31 authenticates a reception source device that is a communication partner when receiving data.
- the reception unit 32, storage unit 33, control unit 34, transmission destination selection unit 35, transmission destination authentication unit 36, and transmission unit 37 are also the reception unit 22, storage unit 23, control unit 24, transmission of the mobile phone 200, respectively.
- Destination selection unit 25 Destination authentication unit 26, Transmission Since the function is the same as that of the unit 27, the description thereof is omitted.
- FIG. 5 is a functional block diagram of the backup server 900.
- the knock-up server 900 also includes a receiving source authentication unit 91, a receiving unit 92, a data extraction unit 93, and a storage unit 94.
- the above components are powerful, such as CPU, ROM, RAM and other control circuits, receiving circuits that receive data, and large-capacity recording media for storing and storing data. Receives and transfers the transfer data and stores it.
- the reception source authentication unit 91 authenticates a reception source device that is a communication partner.
- the receiving unit 92 receives data via the communication path.
- the data extracting unit 93 extracts the transfer data included in the data received by the receiving unit 92.
- the storage unit 94 stores the transfer data extracted by the data extraction unit 93.
- the transfer condition information is information indicating conditions that a relay device that relays and transfers data should follow in executing the transfer process.
- the transfer condition information includes information for realizing protection of transfer data to be knocked up.
- protection of transfer data refers to privacy protection for transfer data.
- the transfer condition information is transmitted together with the transfer data when the information terminal transmits the transfer data.
- the information terminal can give a certain restriction to the relay route of the transfer data.
- the information terminal also transmits predetermined information necessary for performing backup via the communication path.
- the predetermined information refers to transfer data identification information for identifying transfer data, user identification information for identifying the owner of the transfer data, address information of a backup device that finally delivers the transfer data, and the like.
- the transfer condition information will be described in detail.
- FIG. 6 is a diagram showing the transfer condition information 600.
- the transfer condition information 600 includes a transfer deadline 61, a data custody deadline 62, an erasure deadline 63, an address notification necessity 64, a hop count 65, a confidence threshold 66, and a blacklist 67. including.
- the transfer time limit 61 indicates a time limit for transferring the transfer data to the backup device.
- the example in the figure shows that it should be transferred to the backup device by January 1, 2005.
- the data deposit deadline 62 indicates at least how long the relay device that performs the relay processing of the transfer data keeps the transfer data. Transfer data may be deleted when the data storage period has expired. If a time limit is specified by the data storage deadline 62, the relay device does not need to keep the transfer data that has passed and the collection has been abandoned. Can be used effectively. In the example in the figure, it is indicated that the transfer data is held by the relay device until March 1, 2005.
- the deletion deadline 63 indicates a deadline for erasing the transfer data to be relayed from each storage unit of the relay device.
- the relay device can be obliged to erase the transfer data, so that the information terminal user can not recover the data to be knocked up. Even in this case, it is possible to reduce the risk of privacy being violated due to unnecessary transfer data remaining in the relay device.
- “Not specified” is shown, indicating that the relay device does not need to delete the transfer data! /
- Address notification necessity 64 indicates whether or not it is necessary to notify the address of the relay device to the information terminal that transmitted the transfer data when the relay device receives the transfer data.
- the relay device power address is notified, the user of the information terminal that transmitted the transfer data can know which relay device holds the transfer data, so even if the information terminal is lost, By making an inquiry to the address of the relay device that works for notification, the data to be knocked up can be collected. In the example of the figure Therefore, the relay device notifies the information terminal of its own address to the information terminal when receiving the transfer data. On the other hand, if it is not “necessary”, there is no need to send an address notification to the information terminal.
- the number of hops 65 indicates the number of relay devices that permit relaying until the transfer data reaches the backup device, that is, the upper limit of the number of transfers. As a result, it is possible to prevent data transfer through an unnecessarily long relay route, and to reduce the risk of the transfer data being leaked to a user unrelated to the user transmitting the transfer data.
- the number of hops 65 is shown as “3”, so the upper limit of the number of transfers is three.
- the reliability threshold 66 is information indicating the lower limit of the reliability of the transfer destination device that permits transfer of transfer data.
- the reliability of the transfer destination device indicates how much the other device is trusted for each device.
- the reliability of a completely reliable device is 100, which is completely Use a numerical value such as 0 for unreliable equipment reliability, 20 for unreliable equipment, and so on.
- the minimum value of reliability is 0 and the maximum value is 100. The higher the number, the more reliable the other device.
- the relay device stores the reliability value in association with each transfer destination device. For example, a confidence threshold table 700 as shown in FIG. 7 is stored.
- the trust threshold table 700 includes a transfer destination device 71, a transfer destination device address 72, and a reliability 73.
- the transfer destination device 71 indicates the name of another device that is the transfer destination.
- the transfer destination device address 72 indicates the address of another device that is a transfer destination.
- the reliability 73 indicates the reliability of another device that is a transfer destination.
- the relay device controls the transfer process with reference to the value shown in the reliability threshold 66 of the transfer condition information 600 shown in FIG.
- the reliability threshold 66 the reliability threshold 66
- the reliability value stored in each relay device may be set in advance by the user, or the transfer destination device such as the number of times transfer data is transferred to the transfer destination device or the history of data transmission / reception.
- the relay device may be set and stored on the basis of the communication history.
- the relay device obtains the reliability value of the other device transfer destination device.
- the relay device maintains the reliability value! /
- the reliability of the transfer destination device is the reliability of each device through which the data reaches the transfer destination device. As a calculation based on the degree.
- the black list 67 is information indicating a transfer destination device that does not permit transfer of transfer data, and indicates the name and address of the transfer destination device that does not permit transfer. As a result, it is possible to avoid a situation in which transfer data is transferred to a transfer destination apparatus that the information terminal does not desire to transfer.
- the example in the figure shows that transfer is not permitted for “Musashi005” and the like.
- the information terminal is the mobile phone 100
- the relay device is the mobile phone 200 and the backup server 300
- the backup device is the backup server 900. To do.
- FIG. 8 is a flowchart showing the operation of the mobile phone 100 as an information terminal.
- the cellular phone 100 selects data to be backed up by the backup image selection unit 13 from the data acquired by the image acquisition unit 11 and stored in the storage unit 12 (step S81).
- the data to be knocked up may be specified by the user, for example.
- the transfer condition information setting unit 14 sets transfer condition information for the selected backup target data (step S82).
- the user may set manually, or the mobile phone 100 may automatically set according to data-related information such as data acquisition date and time.
- the backup information generation unit 15 sets predetermined data such as a transmission source address, the address of the backup device that is the final transmission destination, and information for identifying the data to be knocked up. From the transfer data to be knocked up and the set transfer condition information, data to be transmitted to the relay device is generated (step S83). [0069] When the data is generated, the transmission destination selection unit 16 selects a communication destination apparatus that performs direct connection via the communication path. In the present embodiment, the mobile phone 200 is selected. When the mobile phone 200 is selected, the mobile phone 200 is authenticated by the destination authentication unit 17. If authentication with the mobile phone 200 is successful, the data generated by the knock-up information generation unit 15 is transmitted to the mobile phone 200 by the transmission unit 18 via the communication path 20 (step S84).
- FIG. 9 is a flowchart showing the operation of a relay device such as the mobile phone 200. In the description of this flowchart, the specific operation of the mobile phone 200 will be described along with the description of the operation of the relay device.
- the relay device When receiving the data, the relay device authenticates the receiving device by the receiving device authentication unit 21.
- the reception unit 22 receives the data transmitted from the reception source device via the communication path.
- the received data includes transfer condition information and transfer data (step s91).
- Source Device Power Transfer data included in the received data is stored in the storage unit 23 (step S92).
- the control unit 24 controls the transfer process of the transfer data according to the transfer condition information. Specifically, if there is a transfer destination device that satisfies the transfer condition information among the devices that can communicate with itself, the control unit 24 selects a transfer destination device that performs transfer by the transmission destination selection unit 25. Select (Step S93). If there is no transfer destination device that satisfies the transfer condition information, no transfer destination device is selected. Also, if direct communication with the backup device can be performed at a relatively high speed, such as when communication with the backup device is possible at a predetermined transfer rate or higher, the backup device can be used as the transfer destination device. Select.
- the process in which the control unit 24 controls the transfer of transfer data according to the transfer condition information will be specifically described with reference to the transfer condition information 600 shown in FIG.
- transfer control using a value of 65 hops will be explained.
- the value shown for 65 hops is ⁇ 1 ''. If it is larger, select the transfer destination device, decrement the hop count by 1, and execute the transfer.
- forwarding is not performed when the number of hops is s “i” or less.
- the mobile phone 100 that is an information terminal first sets “3” as the number of hops
- the mobile phone 200 that is a relay device selects the backup server 300 and performs transfer to the backup server 300.
- the hop count is decremented by 1 and the transfer is executed as “2”. Further, the backup server 300 that has received the transfer data with the hop count “2” confirms that the hop count is greater than “1”, decrements the hop count by 1, and transfers it to the backup server 900 as “1”. To send.
- the control unit 24 refers to, for example, the reliability threshold table 700, and the value indicated in the reliability 73 is the transfer condition information.
- various methods may be considered in which the relay device acquires the reliability value of the external device or other device and selects it using the acquired value.
- the reliability threshold 66 is set higher than a predetermined value and a high reliability is required for the transfer destination device, the reliability is stored in advance in the relay device. It is possible to control to allow transfer of transfer data only to other devices that are shown in the list of transfer destination devices that can be transferred and that have high reliability and are held by the transfer destination device. Yo! /
- a cache process may be performed on the transfer data according to the reliability of each transfer destination device. For example, when transferring data to a device whose reliability is lower than the value shown in the reliability threshold 66, it is tracked which transfer destination device power transfer data leaked when the transfer data was used illegally.
- a cache process may be performed in which a predetermined code is added to the transfer data. It is conceivable to use a technique called “fingerprinting”, “digital watermarking”, “watermarking”, etc. for the predetermined code.
- the transfer data is image data
- the processing can be reduced by changing the image size, reducing the size of the transfer data, performing a filtering process such as mosaic for a specific part of the image, It is good also to do.
- the relay device When the relay device finishes selecting the transfer destination device to execute the transfer, it controls the transfer of the transfer data according to the selection result. In other words, if there is a transfer destination device that satisfies the transfer condition information, the selected transfer destination device is authenticated by the transmission destination authentication unit 26, and if the mutual authentication with the transfer destination device is successful, the transmission unit 27 performs communication. The transfer data and transfer condition information are transmitted to the transfer destination device via the path. If there is no transfer destination device that satisfies the transfer condition information, transfer the transfer data! (Step S94).
- the notification indicates "necessary" in the address notification necessity 64 of the received transfer condition information
- the address of the transmission source information terminal or the information terminal Predetermined data indicating that the transfer data has been received is transmitted to the address of the backup device that is the data backup destination.
- the predetermined data includes the address of the relay device that has received the transfer data. If the specified data is sent to the address of the backup device, even if the information terminal itself is lost, the information terminal user can contact the relay device address received by the backup device. Data for knock-up can be collected.
- the relay apparatus controls transfer processing and storage of transfer data according to the transfer deadline 61, the data storage deadline 62, and the deletion deadline 63 indicated in the transfer condition information.
- each relay device may confirm the integrity of the transfer data when receiving and storing the transfer data.
- a method for confirming integrity for example, a known method such as a method of attaching an electronic signature to transfer data and verifying the signature can be considered. Since the electronic signature is publicly known, detailed description thereof is omitted.
- the mobile phone 200 When receiving the data transmitted by the mobile phone 100, the mobile phone 200 authenticates the mobile phone 100 serving as the reception source device by the reception source authentication unit 21.
- step S91 When mutual authentication with the mobile phone 100 is successful, the data transmitted from the mobile phone 100 via the communication path 20 is received by the receiving unit 22 (step S91). [0080] Transfer data included in the received data is stored in the storage unit 23 (step S92).
- the control unit 24 selects the backup server 300 as a transfer destination device that satisfies the transfer condition information according to the transfer condition information (step S93).
- the backup server 300 is authenticated by the transmission destination authentication unit 26, and when the authentication with the backup server 300 is successful, the control unit 24 uses the transmission unit 27. Then, the transfer data and the transfer condition information are transmitted to the backup server 300 via the communication path 30 (step S94).
- the knock-up server 300 can communicate with the backup server 900, which is the backup execution destination of the user 1 who owns the mobile phone 100, via the communication path 90. Therefore, in step S93, the backup server 900 is used as the transfer destination device. In step S94, data transfer to the backup server 900 is executed.
- FIG. 10 is a flowchart showing the operation of the backup server 900 as a backup device.
- the knock-up server 900 When receiving the data, the knock-up server 900 authenticates the receiving device by the receiving device authentication unit 91, and when the authentication is successful with the receiving device, the receiving unit 92 receives the data via the communication path. Receive (step S101).
- Transfer data is extracted from the received data by the data extraction unit 93 (step S102).
- the extracted transfer data is stored in the storage unit 94 (step S103).
- the data of the information terminal is transferred to the backup device in this way.
- the present invention is not limited to the above-described embodiment, and various application examples can be considered.
- the power that has been described as a backup relay route using one of the intermediate I routes that is, the communication route 20, the communication route 30, and the communication route 90, is added to the above-described relay route.
- backup may be performed by a relay path using relay by the mobile phone 201 and the backup server 301 via the communication path 21, the communication path 31, and the communication path 91 shown in FIG.
- the backup data of the information terminal can be transmitted to the backup device more reliably. For example, if the same backup data is transferred to multiple paths at the same time, even if recovery fails on any path, backup data can be recovered from the remaining paths, so backup data can be recovered more reliably. .
- each transmission destination authentication unit of the information terminal and the relay device may select one or more transmission destinations registered in advance.
- the reliability may be determined and stored between the devices, and the device having the highest reliability among the devices satisfying the transfer condition information may be preferentially selected.
- the conditions indicated in the transfer condition information may not be applied to a relay apparatus that directly communicates with the information terminal and receives data first from the information terminal.
- the information terminal transmits directly to the relay device, the information terminal knows in advance which device the destination device is, so there is a disadvantage for privacy protection for the information terminal user. This is because it may not occur.
- not applying the conditions indicated in the transfer condition information specifically means that when the information terminal transmits data, transmission is performed ignoring the black list 67 and the reliability threshold 66. .
- the value indicated in 65 hop count may not be reduced, or the address may not be notified even if the address notification necessity is “necessary”.
- the information terminal and the relay device may control the transfer path of the transfer data for each data to be transmitted.
- backup is performed using relay by the mobile phone 200 and the knock-up server 300 via the communication path 20, the communication path 30, and the communication path 90.
- other data is not backed up via the communication path 20 or the like, but is backed up using the relay by the mobile phone 201 and the backup server 301 via the communication path 21, the communication path 31, and the communication path 91. You can do it! /
- one transfer data may be divided into two or more, and each divided data may be transferred using a different relay route.
- the original backup target data can be obtained by combining the data received via the plurality of relay paths. In this way, dividing the data into a plurality of pieces can prevent the original data from being restored using the divided partial data.
- a threshold secret sharing scheme can be used as a method of dividing one data into two or more. In this case, even if some data is lost in the middle of the transfer, if there is data that exceeds the threshold for secret sharing, it can be restored by the knock-up device.
- the method for selecting the data to be subjected to the knock-up is generated after the point in time when backup was performed previously.
- the selected data may be selected as a backup target, and if the data to be knocked up is an image, an image showing a person may be preferentially selected as the backup target.
- a backup execution priority is assigned to each data stored in the storage unit 12 of the information terminal, and the backup image selection unit 13 is also set as a backup target in order of higher priority. It may be selected according to.
- the priority of backup execution is based on various information, such as whether backup is necessary, the importance of data, whether data has been backed up, and how much time has passed since the previous backup. As to determine the degree. For example, It may be possible to backup data preferentially, even if the backup is still performed over recently backed up data.
- the backup image selection unit 13 selects not only data acquired by the image acquisition unit 11 and stored in the storage unit 12, but also any data acquired by the mobile phone 100 as a backup execution target. can do.
- it may be data acquired via media such as a network or a recording medium, or it may be various types of data such as music data or video data.
- 100 may be commercial content acquired.
- the transfer condition information includes information for realizing privacy protection related to the transfer data.
- the transfer condition information is a condition that the relay device should follow when executing the transfer process, and may be determined by the content pronoider.
- the present invention includes a case where data is transferred to another device simply by using a relay by a relay device without aiming at knock-up.
- the relay device determines whether or not the transfer data can be erased according to the transfer deadline 61 included in the transfer condition information, the data storage deadline 62, and the deletion deadline 63.
- the present invention is not limited to this.
- the transfer data stored and erased may be deleted.
- Such a predetermined signal may be transmitted from the other device when the other device stores the transfer data, for example.
- the relay apparatus can confirm that the stored transfer data may be discarded. This eliminates the need to hold transfer data unnecessarily.
- a powerful force that is not particularly limited with respect to the start time of backup by the information terminal, for example, when a user instruction is given, the knock-up may be started, or a predetermined Backups may be performed regularly at regular intervals.
- the time point at which backup is performed previously also passes a predetermined time, it is possible to automatically prepare for execution of backup, and execute knock-up as soon as a destination device is found. For example, you can go through the gate of your home or perform a knock-up. In other words, preparation for backup execution is triggered by a predetermined condition, such as when the amount of data exceeds a predetermined amount.
- the information terminal and the relay device reduce the possibility of being referred to from the outside for the data to be knocked up in order to ensure privacy protection. For this reason, it is also possible to start transmission of data after applying encryption.
- This encryption process may be performed each time the transfer is executed, or may be performed using the public key of the knock-up device.
- a signature or authentication code may be added at the time of transmission.
- the public key cryptosystem can also be used for this signature, and as a result, it can be confirmed that the data has been tampered with or forged in the knock-up device.
- the relay device may transfer the received transfer data as it is to another device, and if it is image or video data, the codec method may be changed, correction processing, size, It is also possible to transfer the power by changing the bit rate. You can also add information for electronic transparency tracking and transfer it.
- the term “knock-up” refers to transmitting data to be backed up to an information terminal backup device while the data that is the source of the knock-up is held in the information terminal.
- the information terminal may delete the backup target data stored in the storage unit 12 after transmitting the backup target data.
- the storage area of the information terminal can be used effectively. For example, even if the storage area has little remaining storage capacity to store data, the storage capacity can be made free to store data.
- FIG. 11 is a diagram schematically showing the backup system 2000 according to the second embodiment of the present invention.
- a relay device such as a mobile phone 210 or a mobile phone 211 having substantially the same configuration as the mobile phone 200 and the mobile phone 201 is an information terminal.
- transfer data is received from a certain mobile phone 100, transfer processing that transfers the transfer data to another device is not performed. Instead, exchange information indicating which relay device holds the transfer data is displayed on the backup device.
- the difference is that the data is transmitted to a certain backup server 900 via the communication path 50 or the communication path 51.
- the mobile phone 210 and the mobile phone 211 are connected to the backup server 900 via the communication path 50 and the communication path 51, respectively.
- the communication channel 50 and the communication channel 51 are assumed to be low-speed communication channels as compared with broadband communication such as a telephone line.
- the user of the information terminal can save the data to be knocked up based on the exchange information received by the knock-up device.
- the data that was backed up can be collected by specifying the data and transferring the data to the relay device.
- the configuration of the information terminal is the same as that in Embodiment 1, and thus the description thereof is omitted.
- the configuration of the relay device will be described.
- FIG. 12 is a functional block diagram of mobile phone 210 of the second embodiment.
- mobile phone 210 includes exchange information creation unit 28 that is not included in mobile phone 200 in the first embodiment. Since the constituent elements other than the exchange information creating unit 28 are the same as those of the mobile phone 200, the same reference numerals are assigned and description thereof is omitted.
- the exchange information creating unit 28 receives the data transmitted from the information terminal by the receiving unit 22 and stores the data in the storage unit 23, which relay device holds the data to be backed up of the information terminal. Create redemption information indicating whether or not The exchange information will be described later.
- the exchange information creation unit 28 transmits the created exchange information to the backup device that is the final transmission destination of the received data.
- the configuration of the mobile phone 211 is the same as that of the mobile phone 210, and thus the description thereof is omitted.
- the backup server 900 which is a knock-up device, communicates with the receiving unit 92.
- the exchange information transmitted from the mobile phone 210 via the road is received, and the received exchange information is stored in the storage unit 94.
- FIG. 13 is a diagram showing the redemption information 1300.
- the figure shows an example of exchange information transmitted from the mobile phone 100 to the backup server 900 when the backup target data is transmitted from the mobile phone 100 to the mobile phone 210.
- the exchange information 1300 includes the knock-up source identification information 131, the storage device identification information 132, the backup data ID 133, the backup data capacity 134, the storage deadline 135, and the signature 136. Including.
- the knock-up source identification information 131 indicates an information terminal ID for identifying an information terminal that performs data knock-up and an address of the information terminal.
- the ID of the information terminal is “Han ako001”
- the address of the information terminal is “123.456.789.001”.
- Custody apparatus identification information 132 indicates the ID of a relay apparatus that identifies the relay apparatus that receives and holds data from the information terminal, and the address of the relay apparatus.
- the relay device ID is “Musashi005”
- the relay device address is “456.789.012.345”.
- the knock-up data ID 133 is information for identifying data to be backed up by the information terminal, and indicates the name of the data. In the example in the figure, “Photol.jpg” and “Photo2.jpg” are shown as data names.
- Knock-up data capacity 134 indicates the capacity of data being backed up by the information terminal. In the example in the figure, the data capacity is 5 MB.
- the deposit time limit 135 indicates a period during which data to be backed up is held in the relay device.
- the example in the figure shows that the relay device holds the data for the four-month period from November 1, 2004 to March 1, 2005! /
- the signature 136 is a signature for indicating that the redemption information 1300 has been created by the relay apparatus holding the data.
- the signature is used, for example, R by using the relay device's private key.
- the operation of the information terminal is the same as in the embodiment.
- FIG. 14 is a flowchart showing the operation of the relay device in the second embodiment.
- the backup device is a backup server 900.
- Step S141 is the same process as step S91 shown in FIG. 9, and step S142 is the same process as step S92, and thus the description thereof is omitted here.
- the exchange information creation unit 28 creates exchange information, and sends the created exchange information to the backup server 900 via the communication path 50. Transmit (step S143).
- the transfer data is asked from the knock-up server 900.
- step S144 transfer data transfer processing to the backup server 900 is started (step S144).
- step S144 transfer data transfer processing to the backup server 900 is started (step S144).
- step S144 transfer data transfer processing to the backup server 900 is started (step S144).
- step S144 transfer data transfer processing to the backup server 900 is started (step S144).
- step S144 transfer data transfer processing to the backup server 900 is started (step S144).
- step S144 If there is a match with V, transfer data transfer processing to the backup server 900 is started (step S144).
- the storage unit 23 stores and erases the transfer data stored in the storage unit 23.
- the exchange information has a smaller data size than image data or the like, even if it is transmitted to the backup server 900 using a low-speed communication line such as the communication path 50, the load required for communication or Cost is minimal.
- the backup server 900 when the backup server 900 receives the exchange information via the communication path 50, the backup server 900 stores the received exchange information in the storage unit 94.
- the transfer data is stored based on the exchange information stored in the knock-up server 900.
- Ask the relay device to transfer the transfer data and collect the transfer data.
- a collection method for example, a method using a network using an IP address or a method using a medium such as a memory card can be considered.
- the relay device transmits the created exchange information to the backup device.
- the present invention is not limited to this, and other than the backup device such as an information terminal. It is good also as transmitting to an apparatus.
- the user of the information terminal may store the received exchange information in a removable medium and manage it separately from the information terminal. It is also possible to send exchange information from the information terminal to the backup device.
- the data of the transmission destination device power S backup is also received from the transmission destination device. It is characterized by sending and receiving data for performing knock-up to each other.
- transmission / reception condition information regarding data to be backed up is exchanged between the apparatuses, and whether or not the mutual backup can be executed is determined based on the transmission / reception condition information transmitted to each other.
- FIG. 15 is a functional block diagram of a mobile phone 500 having a function of performing backup with each other. In the present embodiment, it is assumed that the mobile phone 500 performs mutual backup with a mobile phone having the same configuration as the mobile phone 500.
- the mobile phone 500 includes an image acquisition unit 11, a storage unit 12, a backup image selection unit 13, a transfer condition information setting unit 14, a backup information generation unit 15, and a transmission.
- Unit 18 transmission / reception destination selection unit 51, transmission / reception destination authentication unit 52, reception unit 53, transmission / reception condition control unit 54, and transmission / reception condition generation unit 55.
- the image acquisition unit 11, the storage unit 12, the backup image selection unit 13, the transfer condition information setting unit 14, and the backup information generation unit 15 are the same as the mobile phone 100 in Embodiment 1, and thus description thereof is omitted. .
- the transmission unit 18 has a function of transmitting data. As a specific example, the transmission unit 18 transmits transmission / reception condition information regarding data for executing knock-up and data for executing own-machine backup.
- the transmission / reception destination selection unit 51 selects a mobile phone that performs backup for each other.
- the transmission / reception destination authentication unit 52 authenticates mobile phones that perform backups with each other.
- the receiving unit 53 receives the data transmitted from the mobile phone that performs mutual backup and the other party's telephone power that performs the mutual backup.
- the transmission / reception condition control unit 54 receives the transmitted / received condition information. Based on the transmission / reception condition information related to the data to be backed up and the transmission / reception condition information sent to the other party's telephone, the mutual backup with the other party's telephone is controlled.
- the transmission / reception condition generation unit 55 generates transmission / reception condition information related to data for which the own device performs backup.
- FIG. 16 is a diagram showing transmission / reception condition information.
- transmission condition information 1600a shows transmission / reception condition information related to data for which the own device performs backup.
- the receiving condition 1600b shows information on the data to be executed for the other party's telephone power S backup that performs mutual backup.
- whether or not mutual backup can be performed is determined based on the transmission / reception condition information transmitted by the own device and the transmission / reception condition information received by the other party's phone.
- the data amount 161a of the transmission condition 1600a indicates the data amount of data that the own device performs backup.
- the recording method 162a indicates how the data for executing the own device backup should be recorded in the other party's telephone.
- double writing means that the data Indicates that it should be recorded in two power stations.
- Deposit period 163a indicates a period during which the other party's telephone desires to deposit data for performing knock-up. In the example in the figure, it is shown that the user wants to keep the data on the other party's phone for the four months until March 1, 2005.
- the data amount 161b of the reception condition 1600b indicates the data amount of data to be backed up by the other party telephone.
- the recording method 162b indicates how to record the data for the other party's telephone to perform the knock-up on its own device.
- the deposit time limit 163b indicates a period of time during which the other party's telephone wants the data stored in the device to be knocked up. In the example shown in the figure, it is shown that the other party's phone wants to save data for two months until January 1, 2005.
- FIG. 17 is a flowchart showing the mutual backup control operation performed by the information terminal with other devices.
- the cellular phone 500 shows processing up to the exchange of backup data with the other party's phone. Note that the processing for transferring data to the backup device after depositing the backup data with each other is the same as the operation of the relay device in Embodiment 1 described above, and thus the description thereof is omitted.
- mobile phone 500 selects data to be backed up by knock-up image selection unit 13 (step S1701).
- transfer condition information is set by the transfer condition information setting unit 14, and data to be transmitted to another device is generated by the backup information generating unit 15 (step S1702).
- the transmission / reception condition generation unit 55 When the data to be transmitted is generated, the transmission / reception condition generation unit 55 generates transmission / reception condition information for the data to be backed up (step S 1703). In particular,
- the transmission condition 1600a shown in FIG. 16 is generated.
- the other telephone set generates the reception condition 1600b shown in FIG.
- the mobile phone 500 transmits the transmission condition 1600a by the transmission unit 18 and receives the reception condition 1600b by the reception unit 53 (step
- the transmission / reception condition control unit 54 enters the exchanged transmission / reception condition information into a numerical value to become a transmission / reception condition that is mutually fair backup! / (Step S 1705).
- a numerical value calculation method for example, a calculation with a necessary memory capacity X time limit may be considered.
- the transmission / reception condition control unit 54 determines that the mutual backup is fair! / (Step S 1705: YES).
- step S1705 in FIG. 17 when the transmission / reception condition information transmitted / received between the own device and the other party's phone is digitized, the transmission / reception condition is changed when the digitized values are the same value.
- the control unit 54 determines that the backup is fair, it is not limited to the same value, and the difference between the numerical values is less than a predetermined threshold value. In some cases, the criteria may be broadened so that the transmission / reception conditions are fair, as in the case of a certain ratio, such as 70% to 130% of one value.
- the knock-up is started mutually. If the conditions indicated in the condition information are not met, mutual backup may not be permitted. This avoids exchanging data with other parties that do not want to transfer it.
- the amount corresponding to the difference between the numerical values is equal to the fair transmission / reception conditions in step S1706 in the above example. If the difference is within a certain range, etc., the transmission / reception condition was regarded as fair.However, this is not restrictive.For example, the amount corresponding to the difference between the numerical values is knocked up. It can be used as a right or ticket that can be used for the next backup. In this case, it is also possible to use the right ticket or the like when performing mutual backups with a device other than the other party's telephone where the right or ticket is generated.
- the amount corresponding to the difference between the numerical values may be converted into information or incentive having a value different from that of the knock-up.
- electronic money may be converted into value information having a monetary value such as a point, and the right to use the processing capability of a device other than its own, such as the calculation capability of another device, or communication with another device. In doing so, it can be converted to the right to use a wider bandwidth and the right to view commercial content such as moving images.
- the present invention includes a configuration in which data to be backed up is stored mutually without performing transfer using transfer condition information.
- the transmission / reception condition information shown in FIG. 16 is generated as the transmission / reception condition information generation method by the transmission / reception condition generation unit 55.
- the transmission / reception condition information shown in FIG. It may be generated automatically or automatically based on information about the data to be knocked up, such as the capacity of the backup data. That's fine.
- the transmission / reception condition information includes other conditions related to the recording medium that stores the knock-up data, such as the reliability of the media that stores the data to be backed up and the safety of the storage medium. Also good.
- the information terminal is a mobile phone
- the information terminal is not limited to the mobile phone, and includes a communication device having a communication function.
- the communication device is, for example, a PDA (Personal Digital Assistance), a personal computer, or a laptop.
- Each of the above devices is specifically a computer system composed of a microprocessor, ROM, RAM, hard disk unit, display unit, keyboard, mouse and the like.
- a computer program is stored in the RAM or the hard disk unit.
- Microprocessor power Each device achieves its functions by operating according to the computer program.
- the computer program is configured by combining a plurality of instruction codes indicating instructions to the computer in order to achieve a predetermined function.
- a part or all of the constituent elements constituting the information terminal, the relay device, and the backup device may be configured by one system LSI (Large Scale Integration).
- a system LSI is an ultra-multifunctional LSI manufactured by integrating multiple components on a single chip. Specifically, it is a computer system that includes a microprocessor, ROM, RAM, etc. . A computer program is stored in the RAM. Microprocessor power The system LSI achieves its functions by operating according to the computer program. These system LSIs may be individually chipped or may be partly or entirely chipped together. Yes. System LSI is sometimes called IC, LSI, super LSI, or ultra LS I depending on the degree of integration.
- the method of circuit integration is not limited to LSI, and may be realized by a dedicated circuit or a general-purpose processor. You can use an FPGA (Field Programmable Gate Array) that can be programmed after LSI manufacturing, or a reconfigurable processor that can reconfigure the connection and settings of the circuit cells inside the LSI.
- FPGA Field Programmable Gate Array
- the present invention may be the backup method described above. Further, the present invention may be a computer program that realizes these methods by a computer, or may be a digital signal that also has the computer program power.
- the present invention also provides a computer-readable recording medium such as a flexible disk, hard disk, CD-ROM, MO, DVD, DVD-ROM, DVD-RAM, BD ( Blu-ray Disc), semiconductor memory, etc. may be recorded. Further, the present invention may be the computer program or the digital signal recorded on these recording media.
- a computer-readable recording medium such as a flexible disk, hard disk, CD-ROM, MO, DVD, DVD-ROM, DVD-RAM, BD ( Blu-ray Disc), semiconductor memory, etc.
- the present invention may be the computer program or the digital signal recorded on these recording media.
- the present invention may be configured such that the computer program or the digital signal is transmitted via an electric communication line, a wireless or wired communication line, a network represented by the Internet, a data broadcast, or the like.
- the present invention may also be a computer system including a microprocessor and a memory.
- the memory may store the computer program, and the microprocessor may operate according to the computer program.
- the backup system according to the present invention is particularly useful when performing backup in an environment where a mobile communication device such as a mobile phone is used.
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Abstract
Description
Claims
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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JP2006553974A JP4204619B2 (ja) | 2005-01-21 | 2006-01-20 | バックアップシステム、中継装置、情報端末、バックアップ装置 |
US11/793,767 US20080155215A1 (en) | 2005-01-21 | 2006-01-20 | Backup System, Relay Device, Information Terminal, and Backup Device |
US13/013,180 US8316102B2 (en) | 2005-01-21 | 2011-01-25 | Relay device |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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JP2005-013629 | 2005-01-21 | ||
JP2005013629 | 2005-01-21 |
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US11/793,767 A-371-Of-International US20080155215A1 (en) | 2005-01-21 | 2006-01-20 | Backup System, Relay Device, Information Terminal, and Backup Device |
US13/013,180 Division US8316102B2 (en) | 2005-01-21 | 2011-01-25 | Relay device |
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WO2006077977A1 true WO2006077977A1 (ja) | 2006-07-27 |
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PCT/JP2006/300868 WO2006077977A1 (ja) | 2005-01-21 | 2006-01-20 | バックアップシステム、中継装置、情報端末、バックアップ装置 |
Country Status (4)
Country | Link |
---|---|
US (2) | US20080155215A1 (ja) |
JP (1) | JP4204619B2 (ja) |
CN (1) | CN101107874A (ja) |
WO (1) | WO2006077977A1 (ja) |
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Also Published As
Publication number | Publication date |
---|---|
US8316102B2 (en) | 2012-11-20 |
US20080155215A1 (en) | 2008-06-26 |
JP4204619B2 (ja) | 2009-01-07 |
US20110119458A1 (en) | 2011-05-19 |
CN101107874A (zh) | 2008-01-16 |
JPWO2006077977A1 (ja) | 2008-06-19 |
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