WO2016013316A1 - 情報処理装置および情報処理方法 - Google Patents
情報処理装置および情報処理方法 Download PDFInfo
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- WO2016013316A1 WO2016013316A1 PCT/JP2015/066513 JP2015066513W WO2016013316A1 WO 2016013316 A1 WO2016013316 A1 WO 2016013316A1 JP 2015066513 W JP2015066513 W JP 2015066513W WO 2016013316 A1 WO2016013316 A1 WO 2016013316A1
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- stay
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/021—Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/12—Messaging; Mailboxes; Announcements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/22—Processing or transfer of terminal data, e.g. status or physical capabilities
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/18—Self-organising networks, e.g. ad-hoc networks or sensor networks
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
- H04W88/04—Terminal devices adapted for relaying to or from another terminal or user
Definitions
- This technology relates to an information processing apparatus. Specifically, the present invention relates to an information processing apparatus and an information processing method for exchanging information using wireless communication.
- each information processing apparatus can communicate with surrounding information processing apparatuses without depending on a master station such as a control apparatus.
- each information processing device can also transfer information exchanged with other information processing devices in a bucket-relay manner (so-called “so-called”).
- Multi-hop relay A network that performs multi-hop is generally known as a mesh network.
- a relay device that relays two devices wants to stay in a place where the relay can be continued (or a location where the relative distance between the two devices can be maintained).
- an information processing apparatus possessed by a child wants to stay in a place where the child can feel secure (for example, a playground). In such a case, it is important to make a specific device stay in a specific place.
- This technology was created in view of such a situation, and aims to allow a specific device to stay in a specific place.
- the present technology has been made to solve the above-described problems.
- the first aspect of the present technology is that a plurality of information processing apparatuses perform wireless communication on a one-to-one basis so that the plurality of information processing apparatuses can interact with each other. Transmitting a stay request for requesting to stay at a specific location to the first information processing device constituting the plurality of information processing devices in the network connected to the network, and the first information processing device staying at the specific location
- An information processing apparatus, an information processing method, and a program for causing a computer to execute the method include a control unit that performs control to give an incentive to the first information processing apparatus on the condition of
- a stay request for requesting the first information processing apparatus to stay at the specific place is transmitted, and an incentive is given to the first information processing apparatus on condition that the first information processing apparatus stays at the specific place. Bring about an effect.
- the first information processing device relays the data when the information processing device receives data transmitted from the second information processing devices constituting the plurality of information processing devices.
- the control unit grants the incentive to the first information processing apparatus on condition that the first information processing apparatus stays at the specific place until the reception of the data is completed. You may make it do. Accordingly, there is an effect that an incentive is given to the first information processing apparatus on condition that the first information processing apparatus stays at the specific place until the data reception is completed.
- control unit determines the incentive based on a relative positional relationship between the information processing apparatus, the first information processing apparatus, and the second processing apparatus. Also good. This brings about the effect that the incentive is determined based on the relative positional relationship among the own apparatus, the first information processing apparatus, and the second processing apparatus.
- control unit determines the incentive based on the number of information processing devices that can participate in reception of the data among the information processing devices that constitute the plurality of information processing devices. It may be determined. This brings about the effect that the incentive is determined based on the number of information processing devices that can participate in data reception among the information processing devices constituting the plurality of information processing devices.
- control unit may determine the incentive based on a time during which the first information processing apparatus stays at the specific place. This brings about the effect
- control unit may activate the specific application in the first information processing apparatus by giving the incentive to the first information processing apparatus. Accordingly, the first information processing apparatus is activated by giving an incentive to the first information processing apparatus.
- control unit may invalidate the incentive when it is detected that the first information processing apparatus is out of a range of the specific location. . Thereby, when it is detected that the first information processing apparatus has gone out of the range of the specific place, an effect of invalidating the incentive is brought about.
- the control unit when the control unit detects that the first information processing device has gone out of the range of the specific location, the control unit moves the first information processing device to the specific location.
- a warning notice for returning may be transmitted to the first information processing apparatus. Accordingly, when it is detected that the first information processing apparatus has gone out of the range of the specific location, the first information processing device transmits a warning notification for returning to the specific location to the first information processing device. Bring about an effect.
- An information processing apparatus, an information processing method, and a program for causing a computer to execute the method are provided. Thereby, based on the incentive given from the first information processing device on the condition that the own device stays at the specific location when a stay request for requesting to stay at the specific location is received from the first information processing device It brings about the effect of processing.
- control unit may activate a specific application based on the incentive. This brings about the effect
- control unit may stop or terminate the specific application when it is detected that the information processing apparatus has gone out of the range of the specific location. .
- the specific application is stopped or terminated.
- control unit may invalidate the incentive when it is detected that the information processing apparatus has gone out of the range of the specific location.
- the incentive is invalidated.
- the control unit when it is detected that the information processing apparatus has gone out of the range of the specific location, the control unit transmits a message to that effect to the first information processing apparatus. It may be.
- the effect when it is detected that the own device has gone out of the range of the specific location, the effect is that the fact is transmitted to the first information processing device.
- 12 is a flowchart illustrating an example of a processing procedure of data relay processing by the information processing device 300 according to the first embodiment of the present technology.
- 6 is a flowchart illustrating an example of a processing procedure of data reception processing by the information processing device 200 according to the first embodiment of the present technology.
- 7 is a flowchart illustrating an example of a processing procedure of data transmission processing by the information processing apparatus 100 according to the first embodiment of the present technology. It is a sequence chart which shows the example of a communication process between each apparatus which comprises the communication system 10 in 1st Embodiment of this technique.
- 12 is a flowchart illustrating an example of a processing procedure of data relay processing by the information processing device 300 according to the first embodiment of the present technology.
- FIG. 6 is a flowchart illustrating an example of a processing procedure of data reception processing by the information processing device 200 according to the first embodiment of the present technology. It is a figure which shows an example of the communication system 20 which consists of the information processing apparatus 500 and 510 in 2nd Embodiment of this technique. It is a figure which shows the system configuration example of the communication system 30 in 2nd Embodiment of this technique. It is a sequence chart which shows the example of a communication process between each apparatus which comprises the communication system 10 in 2nd Embodiment of this technique. It is a figure which shows the structural example of the flame
- FIG. 22 is a flowchart illustrating an example of a processing procedure of management processing by the information processing device 510 according to the second embodiment of the present technology. It is a block diagram which shows an example of a schematic structure of a smart phone. It is a block diagram which shows an example of a schematic structure of a car navigation apparatus.
- First embodiment an example in which an incentive is given to a relay station for performing communication between information processing devices and the user stays at a specific place during the communication
- Second Embodiment Example in which a user who owns an information processing device stays in a specific place
- Application examples
- FIG. 1 is a diagram illustrating a system configuration example of a communication system 10 according to the first embodiment of the present technology.
- the communication system 10 includes information processing apparatuses 100 to 104, 200 to 205, and 300.
- the information processing apparatuses 100 to 104, 200 to 205, and 300 are, for example, portable information processing apparatuses having a wireless communication function.
- the portable information processing apparatus is an information processing apparatus such as a smartphone, a mobile phone, or a tablet terminal.
- the information processing apparatuses 100 to 104, 200 to 205, and 300 may be fixed information processing apparatuses having a wireless communication function, for example.
- the fixed information processing apparatus is an information processing apparatus such as a printer, a personal computer, or an object.
- the information processing apparatuses 100 to 104, 200 to 205, and 300 can perform wireless communication using a wireless LAN (Local Area Network) communication method. Further, the information processing apparatuses 100 to 104, 200 to 205, and 300 may perform wireless communication using other communication methods. For example, wireless communication may be performed using a 3GPP (3rd Generation Generation Partnership Project) communication method.
- 3GPP 3rd Generation Generation Partnership Project
- the communication path of wireless communication performed between the devices is indicated by a straight dotted line.
- the wireless communication performed between the devices is realized by, for example, a communication method that autonomously interconnects with surrounding information processing devices.
- the surrounding information processing apparatus is, for example, an adjacent information processing apparatus or an adjacent information processing apparatus.
- ad-hoc communication ad-hoc network, and the like are known as a communication method for autonomously interconnecting with surrounding information processing apparatuses.
- each information processing device can communicate with surrounding information processing devices without depending on a master station (for example, a control device). Therefore, in the first embodiment of the present technology, an ad hoc network or a mesh network will be described as an example of a communication method for autonomously interconnecting with surrounding information processing apparatuses.
- the new information processing device can freely join the network.
- the network coverage can be increased as the number of information processing devices (surrounding information processing devices) increases. That is, the network coverage can be increased as information processing devices are added sequentially.
- the information processing apparatuses 100 to 104 have already formed a mesh group. Further, for example, it is assumed that the information processing apparatuses 200 to 205 have already formed a mesh group.
- each information processing device can also transfer information exchanged between other information processing devices in a bucket relay manner.
- the information processing apparatus 300 capable of direct communication with the information processing apparatus 100 can transfer the data of the information processing apparatus 100 to the information processing apparatus 200.
- the information processing apparatus 100 and the information processing apparatus 200 that cannot directly communicate with the information processing apparatus 100 exchange information with each other via the information processing apparatus 300. Can be done.
- This method of transferring data to each other (so-called bucket relay) and delivering information to a remote information processing apparatus is called a multi-hop relay.
- a network that performs multi-hop is generally known as a mesh network.
- the information processing apparatuses 100 and 200 can communicate via the information processing apparatus 300 that is a relay station. However, if the information processing apparatus 300 moves to a place where communication with at least one of the information processing apparatuses 100 and 200 is not possible, the information processing apparatuses 100 and 200 cannot perform communication.
- the user of the information processing apparatus 200 desires to receive data from the information processing apparatus 100.
- the user of the information processing device 200 can connect the information processing device 300, which is a relay station, within a range in which communication with each of the information processing devices 100 and 200 is possible until reception of the data is completed. Need to stay.
- the incentive means something that becomes a motivation or inducer to cause a certain action.
- incentives can be realized by discounts, service tickets, points, cash vouchers, etc. that are restricted in their use but can be replaced with values equivalent to money.
- incentives are realized by things that can be exchanged for things, those that are given unilaterally by clearing conditions such as rewards, and those that show high value by showing the degree of contribution can do.
- the provision of the incentive can be the provision of information for realizing the incentive (for example, a point for realizing the incentive).
- FIG. 2 is a block diagram illustrating an internal configuration example of the information processing apparatus 100 according to the first embodiment of the present technology.
- the internal configuration of the other information processing apparatuses (information processing apparatuses 101 to 104, 200 to 205, and 300) is also substantially the same as that of the information processing apparatus 100, and therefore only the information processing apparatus 100 will be described here. Description of other information processing apparatuses is omitted.
- the information processing apparatus 100 includes a wireless communication unit 110, an antenna 120, an input / output (I / O) interface 130, a storage unit 140, a control unit 150, an operation reception unit 160, and a display unit 170. . These units are connected via a bus 190.
- the wireless communication unit 110 is a module (for example, a cellular modem, a wireless local area network (LAN) modem) for transmitting and receiving radio waves via the antenna 120.
- the wireless communication unit 110 can perform wireless communication by a wireless LAN communication method.
- the wireless communication unit 110 may perform wireless communication using a 3GPP specification communication method.
- the wireless communication unit 110 may perform wireless communication by millimeter wave communication (60 GHz or the like), 900 MHz / 2.4 GHz / 5 GHz wireless LAN, or UWB (Ultra Wide Band).
- the wireless communication unit 110 may perform wireless communication by visible light communication or NFC (Near Field Communication).
- the wireless communication unit 110 can transfer each information to another information processing apparatus via a certain information processing apparatus based on the control of the control unit 150.
- a method of transferring data to each other (so-called bucket relay) and delivering information to a distant information processing apparatus is called a multi-hop relay.
- a network that performs multi-hop is generally known as a mesh network.
- the wireless communication unit 110 exchanges signals for generating or updating a multi-hop communication path with other information processing apparatuses using wireless communication. .
- the wireless communication unit 110 may perform wireless communication using radio waves (electromagnetic waves), or perform wireless communication using a medium other than radio waves (for example, wireless communication performed using a magnetic field). May be.
- radio waves electromagnetic waves
- a medium other than radio waves for example, wireless communication performed using a magnetic field
- the I / O interface 130 is an interface with external devices such as sensors and actuators that operate in conjunction with the information processing apparatus 100.
- FIG. 2 shows an example in which a state detection unit 181 and an audio output unit 182 are connected to the I / O interface 130 as external devices. 2 shows an example in which the state detection unit 181 and the audio output unit 182 are provided outside the information processing apparatus 100, all or part of them may be incorporated in the information processing apparatus 100.
- An external device such as a wearable computer or a wearable terminal may be connected to the I / O interface 130 for use.
- the state detection unit 181 detects the state (for example, position, posture, movement distance) of the information processing apparatus 100 by detecting the acceleration, movement, inclination, and the like of the information processing apparatus 100. Then, the state detection unit 181 outputs state information regarding the detected state to the control unit 150 via the I / O interface 130.
- the state detection unit 181 for example, an acceleration sensor, a gyro sensor, or GPS (Global Positioning System) can be used.
- the sound output unit 182 is a sound output unit (for example, a speaker) that outputs various sounds based on the control of the control unit 150.
- the storage unit 140 is a memory that stores various types of information.
- the storage unit 140 stores various information (for example, a control program) necessary for the information processing apparatus 100 to perform a desired operation.
- the storage unit 140 stores various contents such as music content and image content (for example, moving image content and still image content).
- the control unit 150 controls each unit of the information processing apparatus 100 based on a control program stored in the storage unit 140. For example, the control unit 150 performs signal processing of transmitted / received information.
- the control unit 150 is realized by a CPU (Central (Processing Unit).
- the control unit 150 processes information read from the storage unit 140, a signal input from the I / O interface 130, and the like.
- the data block (transmission packet) to be actually transmitted is generated.
- the control unit 150 outputs the generated transmission packet to the wireless communication unit 110.
- the wireless communication unit 110 converts the transmission packet into a communication method format or the like for actual transmission, and then transmits the converted transmission packet from the antenna 120 to the outside.
- the wireless communication unit 110 when data is received by the wireless communication unit 110 using wireless communication, the wireless communication unit 110 performs radio wave signals received via the antenna 120 by a receiver in the wireless communication unit 110. Received packets are extracted by signal processing. Then, the control unit 150 interprets the extracted received packet. As a result of this interpretation, when it is determined that the data is to be held, the control unit 150 writes the data in the storage unit 140. When it is determined that the data is to be transferred to another information processing apparatus, the control unit 150 outputs the data to the wireless communication unit 110 as a transmission packet to be transferred to the other information processing apparatus. To do. In addition, when it is determined that the data is to be output, the control unit 150 performs output to the display unit 170 or output from the I / O interface 130 to the outside (for example, the audio output unit 182).
- control unit 150 can provide various types of content stored in the storage unit 140 to other information processing apparatuses using wireless communication.
- control unit 150 transmits a stay request for requesting to stay at a specific place to another information processing apparatus in the network, and the information processing apparatus is provided on the condition that the information processing apparatus stays at the specific place. Control to give an incentive to.
- control unit 150 performs a reception process of receiving a stay request for requesting to stay at a specific place from another information processing apparatus in the network.
- control unit 150 performs a process (for example, activation of a specific application) based on an incentive given from the information processing apparatus on condition that the information processing apparatus 100 stays at the specific place.
- the operation accepting unit 160 is an operation accepting unit that accepts an operation input performed by the user, and outputs operation information corresponding to the accepted operation input to the control unit 150.
- the operation receiving unit 160 is realized by, for example, a touch panel, a keyboard, a mouse, and a sensor (for example, a touch interface).
- the display unit 170 is a display unit that displays various information based on the control of the control unit 150.
- a display panel such as an organic EL (Electro Luminescence) panel or an LCD (Liquid Crystal Display) panel can be used.
- the operation receiving unit 160 and the display unit 170 can be integrally configured using a touch panel that allows a user to input an operation by touching or approaching the finger with the display surface.
- FIG. 3 is a sequence chart illustrating an example of communication processing between devices included in the communication system 10 according to the first embodiment of the present technology. 3 shows an example of communication processing when the information processing apparatuses 100, 200, and 300 exist in the topology shown in FIG.
- FIG. 3 shows an example of information exchange between the information processing apparatuses 100 and 200 using the information processing apparatus 300 as a relay station. Specifically, an example is shown in which the information processing apparatus 200 requests the information processing apparatus 100 to transmit data stored in the information processing apparatus 100 via the information processing apparatus 300. FIG. 3 illustrates an example in which the information processing apparatus 300 that is a relay station calculates an incentive and requests the calculated incentive from the information processing apparatus 200 that has transmitted the stay request.
- the information processing apparatus 200 transmits a data transmission request (data transmission request signal) to the information processing apparatus 100 via the information processing apparatus 300 in order to have the information processing apparatus 100 transmit data (401 to 404). .
- the information processing apparatus 100 determines whether or not data transmission related to the data transmission request is possible. When the data transmission related to the data transmission request is possible, the information processing apparatus 100 sends a packet (transmission approval notification) indicating that the data transmission is possible via the information processing apparatus 300 to the information It transmits to the processing apparatus 200 (405 to 408).
- a packet transmission approval notification
- the information processing apparatus 100 If the data transmission related to the data transmission request is possible, the information processing apparatus 100 generates data traffic (preparation of transmission data) (409).
- the preparation of the transmission data may be performed at any timing as long as the data transmission related to the data transmission request is started.
- the information processing apparatus 200 calculates the time required to receive the data related to the data transmission request. For example, the information processing apparatus 200 can calculate the time based on the data amount and the minimum rate of the data related to the data transmission request. When calculating the time, an optimum rate may be used instead of the minimum rate depending on the environment. Also, other communication rates may be used depending on the environment. Further, in the first embodiment of the present technology, the time calculated as described above is set as a time desired to stay in the information processing apparatus 300 (stay time).
- the information processing apparatus 200 transmits a packet (request signal (stay request)) including information (for example, a time length (for example, 10 sec)) for specifying the calculated time to the information processing apparatus 300. (410, 411).
- a packet request signal (stay request)
- information for example, a time length (for example, 10 sec)
- the information processing device 200 directly transmits the stay request to the information processing device 300 (410, 411).
- the information processing apparatus 300 calculates an incentive to be requested to the information processing apparatus 200 that has transmitted the stay request (412).
- the information processing apparatus 300 notifies the user that the stay request has been received. For example, the fact that the stay request has been received, the stay time (for example, 10 seconds) related to the stay request, and the calculated incentive (for example, a numerical value) are displayed on the display unit of the information processing device 300 to notify the user. can do. Further, for example, it is possible to notify the user by outputting a voice that the stay request has been received, the stay time related to the stay request, and the calculated incentive.
- the stay time for example, 10 seconds
- the calculated incentive for example, a numerical value
- FIG. 3 shows an example when an operation input for approving the stay request is accepted.
- the information processing apparatus 300 notifies the stay request to be approved (stay approval notice), an incentive request, Is transmitted to the information processing apparatus 200 (414, 415).
- the incentive request is information for requesting the calculated incentive.
- the information processing apparatus 300 transmits to the information processing apparatus 100 that the information transmission apparatus 200 has been permitted to relay data transmission (notification of stay approval) (416, 417). In this case, since the information processing apparatuses 100 and 300 can directly communicate with each other, the information processing apparatus 300 directly transmits the stay approval notification to the information processing apparatus 100 (416 and 417).
- the information processing apparatus 100 starts data transmission to the information processing apparatus 200 (418 to 421). While this data transmission is performed, the information processing apparatus 300 needs to stay in a range where both the information processing apparatus 100 and the information processing apparatus 200 can communicate. That is, the information processing apparatus 300 does not move until the stay time (for example, 10 sec) related to the stay request elapses after data transmission from the information processing apparatus 100 to the information processing apparatus 200 is started. You need to stay in the same place (or the surrounding area).
- the stay time for example, 10 sec
- the information processing apparatus 200 transmits the requested incentive to the information processing apparatus 300 (422, 423).
- information for example, point information
- the incentive is transferred from the user of the information processing device 200 to the user of the information processing device 300 (422, 423).
- the information processing apparatus 300 transmits a notification (notification of stay unapproved) that the stay request is not approved to the information processing apparatus 200.
- the information processing device 300 cannot be used as a relay station, the information processing device 200 cannot receive data from the information processing device 100.
- the next relay station (next It is possible to make a stay request on the optimal route).
- stay requests can be made sequentially to the third and subsequent relay stations (next optimal route).
- FIG. 3 shows an example in which whether or not to approve a stay request is manually performed by the user
- the user may set in advance to approve all stay requests.
- the information processing apparatus 300 can automatically transmit a stay approval notification to the information processing apparatus that has transmitted the stay request.
- the relay station accepts multiple stay requests at the same time (or almost simultaneously).
- the information processing devices that have transmitted the stay requests may be displayed side by side in order of reliability.
- the user can manually select an information processing apparatus that permits relaying.
- relaying may be automatically permitted to a high-level information processing apparatus with high reliability.
- FIG. 4 is a diagram illustrating an incentive calculation example by the relay station configuring the communication system 10 according to the first embodiment of the present technology.
- FIG. 4 shows a method for calculating an incentive weight.
- FIG. 4 shows an example in which data communication is performed between the information processing devices 431 and 432 using the information processing device 433 as a relay station.
- the information processing apparatus 433 can calculate the incentive weight W using the following Expression 1.
- W w (t, n, d) Equation 1
- t is a value indicating the stay time (Time).
- N is a value indicating the number of relay stations (num of relay nodes).
- D is a value indicating the distance between the devices.
- the incentive weight W is calculated so that the longer the staying time, the higher the incentive.
- the weight W of the incentive is calculated such that the more relay stations, the higher the incentive.
- the number of relay stations can be the number of relay stations outside the information processing devices 431 and 432, for example.
- the more relay stations the easier it is to communicate between the networks. For this reason, the weight W of the incentive is calculated so that the incentive becomes high.
- the number of relay stations may be the number of relay stations inside the information processing devices 431 and 432, for example. In this case, the more relay stations, the more relay stations that can be selected. For this reason, it is preferable to calculate the weight W of the incentive so that the more the number of relay stations, the lower the incentive.
- the incentive weight W is calculated so that the incentive becomes higher as the distance between the data transmission source and the own device (relay station) is equal to the distance between the data transmission destination and the own device (relay station). Can do.
- the distance between the information processing devices 431 and 432 is 2 ⁇ R1.
- w (t, n, D1) ⁇ w (t, n, D2) ⁇ w (t, n, D3).
- a calculation method for calculating the distance between devices a calculation method using a measurement result (for example, received signal strength) of a packet from another information processing device can be employed.
- a measurement result for example, received signal strength
- RSSI Receiveived Signal Strength Indicator
- the RSSI of the packet that the information processing device 433 receives from the information processing device 431 is RSSI_A. Further, the RSSI of the packet that the information processing device 433 receives from the information processing device 432 is set to RSSI_B.
- the weight W of the incentive is calculated so as to increase the incentive.
- control unit of the information processing device 433 can determine the incentive based on the relative positional relationship between the information processing devices 431 to 433.
- control unit of the information processing device 433 is an information processing device that can participate in data reception in the network (for example, the number of relay stations outside or between the devices that perform data communication). Incentives can be determined based on the number of
- control unit of the information processing device 433 can determine an incentive based on the time that the information processing device 433 stays at a specific place.
- FIGS. 5 and 6 are flowcharts illustrating an example of a processing procedure of data relay processing by the information processing device 300 according to the first embodiment of the present technology.
- the control unit of the information processing device 300 determines whether or not the information processing device 300 is moving (step S701). In this case, the control unit of the information processing device 300 may determine whether or not the information processing device 300 is moving the absolute position, and the information processing device 300 may move the relative position. It may also be determined whether or not The absolute position movement means that the information processing apparatus 300 moves with respect to the ground, for example. In this case, for example, the control unit of the information processing device 300 determines whether or not the information processing device 300 is moving based on the state information from the state detection unit (corresponding to the state detection unit 181 illustrated in FIG. 2). Can be judged.
- the relative movement of the position means that the information processing apparatus 300 moves in relation to the position of the other information processing apparatus when the position of the other information processing apparatus is used as a reference. That is, in the determination of relative position movement, for example, when the distance between the information processing apparatus 300 and another information processing apparatus changes, it can be determined that the information processing apparatus 300 has moved.
- the information processing apparatus 300 is moving (step S701), it is not preferable to become a relay station. Therefore, the data relay processing operation is terminated.
- step S701 the control unit of the information processing device 300 determines whether a stay request has been received (step S702). If no stay request has been received (step S702), the process returns to step S701.
- step S703 the control unit of the information processing device 300 determines whether the information processing device 300 is set to accept the stay request (step S703). This setting is assumed to be performed in advance by a user operation, for example. If the setting for accepting the stay request is not made (step S703), the process returns to step S701.
- step S703 the control unit of the information processing apparatus 300 calculates an incentive to be requested to the information processing apparatus that has transmitted the stay request (step S704).
- control unit of the information processing device 300 notifies the user that the stay request has been received (step S705). Subsequently, the control unit of the information processing device 300 determines whether or not an operation input (approval operation) for approving the stay request has been received by the user (step S706).
- step S706 When the approval operation has been accepted (step S706), the control unit of the information processing device 300 has transmitted the stay request with a notice that the stay request is approved (stay notice) and an incentive request. The information is transmitted to the information processing apparatus (step S707).
- control unit of the information processing device 300 transmits the stay approval notification to the information processing device that is the data transmission source (step S708).
- step S706 When an operation input that does not approve the stay request (unapproved operation) is accepted (step S706), the control unit of the information processing device 300 gives a notification that the stay request is not approved (stay unapproved notification). Then, the stay request is transmitted to the information processing apparatus that has transmitted the request (step S709).
- control unit of the information processing device 300 transmits the stay unapproved notification to the information processing device that is the data transmission source (step S710).
- control unit of the information processing device 300 determines whether or not data transmission from the information processing device that is the data transmission source has been started (step S711). If the data transmission has not started (step S711), the monitoring is continued. On the other hand, when the data transmission is started (step S711), the control unit of the information processing device 300 starts counting related to the stay request (step S712).
- the control unit of the information processing device 300 determines whether or not the count has reached the stay time related to the stay request (step S713). The monitoring is continued until the count reaches the stay time according to the stay request (step S713). In this case, the control unit of the information processing device 300 determines whether or not the information processing device 300 has moved, and if the information processing device 300 has moved significantly, a warning notification may be issued. .
- the control unit of the information processing device 300 determines whether an incentive is received from the information processing device that has transmitted the stay request (Ste S714). If an incentive is received from the information processing apparatus that has transmitted the stay request (step S714), the data relay processing operation is terminated.
- step S714 If the incentive has not been received from the information processing apparatus that has transmitted the stay request (step S714), the control unit of the information processing apparatus 300 retransmits the incentive request to the information processing apparatus that has transmitted the stay request. Transmit (step S715).
- control unit of the information processing device 300 determines whether or not an incentive has been received from the information processing device that has transmitted the stay request (step S716). If an incentive is received from the information processing apparatus that has transmitted the stay request (step S716), the data relay processing operation is terminated.
- step S716 If no incentive is received from the information processing apparatus that has transmitted the stay request (step S716), the above-described processes are repeated (steps S714 to S717) a predetermined number of times (for example, N times).
- FIG. 7 is a flowchart illustrating an example of a processing procedure of a data reception process performed by the information processing device 200 according to the first embodiment of the present technology.
- a control unit (corresponding to the control unit 150 shown in FIG. 2) of the information processing device 200 sends a data transmission request (data transmission request signal) via the information processing device 300 in order to have the data transmitted from the information processing device 100. Then, the information is transmitted to the information processing apparatus 100 (step S721).
- control unit of the information processing device 200 determines whether or not a transmission approval notification has been received (step S722). If the transmission approval notification has not been received (step S722), the above-described processes are repeated (steps S721 to S723) a predetermined number of times (for example, N times).
- the control unit of the information processing device 200 calculates the time required to receive the data related to the data transmission request. Then, the control unit of the information processing device 200 transmits a packet (request signal (stay request)) including the calculated time to the information processing device 300 (step S724).
- control unit of the information processing device 200 determines whether or not a stay approval notification has been received (step S725). If the stay approval notification has not been received (step S725), the above-described processes are repeated (steps S724 to S726) a predetermined number of times (for example, N times).
- step S725 the control unit of the information processing device 200 performs a reception process for receiving data from the information processing device 100 (step S727). Then, the control unit of the information processing device 200 determines whether or not the data transmission from the information processing device 100 has ended (step S728). If data transmission from the information processing apparatus 100 has not ended (step S728), the process returns to step S727.
- step S728 When the data transmission from the information processing apparatus 100 is completed (step S728), the control unit of the information processing apparatus 200 transmits the requested incentive to the information processing apparatus 300 (step S729).
- FIG. 8 is a flowchart illustrating an example of a processing procedure of a data transmission process performed by the information processing apparatus 100 according to the first embodiment of the present technology.
- the control unit 150 of the information processing apparatus 100 determines whether a data transmission request has been received (step S731). If no data transmission request has been received (step S731), monitoring is continued.
- step S731 the control unit 150 of the information processing apparatus 100 determines whether or not data transmission related to the data transmission request is possible (step S732).
- step S732 the information processing apparatus 100 sends a packet (transmission approval notification) indicating that the data transmission is possible to the information processing apparatus 300.
- the information is transmitted to the information processing apparatus 200 via the route (step S733).
- control unit 150 of the information processing apparatus 100 when the data transmission related to the data transmission request is possible, the control unit 150 of the information processing apparatus 100 generates data traffic (preparation of transmission data) (step S734).
- step S735 the control unit 150 of the information processing apparatus 100 determines whether or not a stay approval notification has been received.
- step S735 the control unit 150 of the information processing apparatus 100 determines whether or not a stay approval notification has been received.
- the process returns to step S731.
- step S735 the control unit 150 of the information processing apparatus 100 starts data transmission to the information processing apparatus 200 (step S736). Then, the control unit 150 of the information processing apparatus 100 determines whether or not the data transmission to the information processing apparatus 200 has ended (step S737). If data transmission to the information processing apparatus 200 has not been completed (step S737), the process returns to step S736. When the data transmission to the information processing apparatus 200 is completed (step S737), the data transmission processing operation is terminated.
- FIG. 9 is a sequence chart illustrating an example of communication processing between devices included in the communication system 10 according to the first embodiment of the present technology.
- FIG. 9 is a modification of part of FIG. For this reason, parts common to those in FIG. 3 are denoted by the same reference numerals as those in FIG.
- the information processing apparatus 200 calculates an incentive (431). Then, the information processing apparatus 200 includes the calculated incentive in the stay request and transmits it to the information processing apparatus 300 (432, 433). Thereby, the information processing apparatus 300 can use the incentive calculated by the information processing apparatus 200.
- FIG. 10 is a flowchart illustrating an example of a processing procedure of data relay processing by the information processing device 300 according to the first embodiment of the present technology.
- FIG. 10 is a modification of part of FIG. For this reason, portions common to those in FIG. 5 are denoted by the same reference numerals as those in FIG.
- step S704 the incentive calculation process shown in FIG. 5 is omitted.
- FIG. 11 is a flowchart illustrating an example of a processing procedure of a data reception process performed by the information processing device 200 according to the first embodiment of the present technology.
- FIG. 11 is a modification of part of FIG. For this reason, portions common to those in FIG. 7 are denoted by the same reference numerals as those in FIG.
- step S722 the control unit of the information processing device 200 calculates an incentive to be given to the relay station (step S730). Then, the control unit of the information processing device 200 transmits a stay request including the incentive calculated as described above to the information processing device 300 (step S724).
- Second Embodiment> In the first embodiment of the present technology, an example is given in which an incentive is given to a relay station for performing communication between information processing apparatuses so that the user stays at a specific place during the communication.
- a relay station for performing communication between information processing apparatuses so that the user stays at a specific place during the communication.
- the parent wants the child to be in a certain place (for example, a playground in the commercial facility).
- a child will rarely stay within the range desired by the parent unless the parent or another person (person in charge of the commercial facility) monitors.
- the second embodiment of the present technology an example is shown in which a user (for example, a child) who owns an information processing apparatus can be allowed to stay in a specific place (for example, a playground in a commercial facility).
- a user for example, a child
- an information processing apparatus can be allowed to stay in a specific place (for example, a playground in a commercial facility).
- the configuration of the information processing apparatus according to the second embodiment of the present technology is substantially the same as the information processing apparatuses 100, 200, and 300 illustrated in FIG.
- symbol same as 1st Embodiment of this technique is attached
- FIG. 12 is a diagram illustrating an example of the communication system 20 including the information processing devices 500 and 510 according to the second embodiment of the present technology.
- a dotted circle 21 is a playground in a commercial facility.
- the mother who owns the information processing apparatus 500 gives an incentive (for example, the right to play a game) to the child that possesses the information processing apparatus 510. This can induce the child to stay where the parent wants.
- FIG. 13 is a diagram illustrating a system configuration example of the communication system 30 according to the second embodiment of the present technology.
- the communication system 30 includes information processing apparatuses 500 to 504 and 510 to 516.
- the information processing apparatus 500 is an information processing apparatus possessed by a mother
- the information processing apparatus 510 is an information processing apparatus possessed by the mother's child.
- each of the information processing devices 511 to 516 existing around the information processing device 510 is an information processing device owned by a child of another parent (having the information processing devices 501 to 504).
- a mesh BSS Basic Service Set
- each information processing apparatus is schematically shown by a dotted circle 31.
- FIG. 14 is a sequence chart illustrating an example of communication processing between devices included in the communication system 10 according to the second embodiment of the present technology.
- FIG. 14 shows an example of communication processing when the information processing apparatuses 500 and 510 exist in the topology shown in FIG.
- FIG. 14 shows an example of pairing (peering) performed between the information processing apparatuses 500 and 510.
- the mother who owns the information processing apparatus 500 guides to a place (for example, a play place) where the child who carries the information processing apparatus 510 is to be kept. Therefore, with regard to the information processing device 500 possessed by the mother and the information processing device 510 possessed by the child, a Mesh Peer Link is established between other information processing devices existing around the place where the child wants to stay, Join the Mesh-BSS.
- the information processing apparatus 500 After participating in the Mesh-BSS, the information processing apparatus 500 performs settings for controlling incentives for the information processing apparatus 510.
- the information processing device 500 and the information processing device 510 exchange beacons with each other, and confirm each other's presence as surrounding information processing devices (601, 602).
- the mother specifies the mesh ID and mesh configuration in the information processing apparatus 500.
- the information processing apparatus 500 transmits a beacon including the information (mesh ID, mesh configuration) (601).
- the information processing apparatus 510 that has received this beacon causes the display unit to display that the beacon has been received.
- the mother also sets the mesh ID and mesh configuration in the information processing apparatus 510 in advance.
- the mesh ID set in advance in the information processing apparatus 510 is the same mesh ID as the mesh ID specified in the information processing apparatus 500.
- the mesh configuration set in advance in the information processing apparatus 510 is assumed to be the same mesh configuration as the mesh configuration specified in the information processing apparatus 500.
- the information processing apparatus 500 and the information processing apparatus 501 transmit and receive beacons including the same information (mesh ID, mesh configuration) to each other (601, 602). Thereby, the information processing apparatus 500 and the information processing apparatus 501 can detect that each other's apparatuses exist in a range where direct communication is possible. It is assumed that the same mesh ID and the same mesh configuration are not set in advance. In this case, by selecting the mesh ID and mesh configuration specified by the information processing apparatus 500 by the mother on the information processing apparatus 510 side, it is possible to specify the partner apparatus that establishes the peer link.
- the information processing apparatuses 500 and 510 exchange the Mesh Peering open frame (603, 605) and the Mesh Peering confirm frame (604, 606) with each other. Thereby, Mesh Peer Link is established (607). It should be noted that either the information processing apparatus may transmit the mesh peering open frame or the mesh peering confirm frame first. In addition, Mesh Peering open and Mesh Peering confirm are setting procedures performed by mesh devices having matching mesh profiles to establish a mutual communication path.
- FIGS. 15 to 17 are diagrams illustrating configuration examples of frames exchanged between the information processing apparatuses that configure the communication system 30 according to the second embodiment of the present technology.
- FIG. 15 shows a configuration example of a beacon frame
- FIG. 16 shows a configuration example of Mesh Peering open frame and Mesh Peering confirm frame.
- FIG. 17A shows a configuration example of the management setting request frame
- FIG. 17B shows a configuration example of the management setting confirmation frame
- FIG. 17C shows a configuration example of the violation notification frame. Show. Each of these frames will be described in detail with reference to FIGS. 27 and 28.
- FIGS. 18 to 26 are diagrams illustrating examples of display screens displayed between the information processing devices that configure the communication system 30 according to the second embodiment of the present technology. Each of these display screen examples will be described in detail with reference to FIGS.
- FIG. 27 is a sequence chart illustrating a communication processing example between devices included in the communication system 10 according to the second embodiment of the present technology.
- FIG. 27 shows an example of communication processing when the information processing apparatuses 500 and 510 exist in the topology shown in FIG.
- FIG. 27 shows an example from the pairing between the information processing apparatuses 500 and 510 to the start of incentive management.
- the information processing apparatuses 500 and 510 share a password in advance. Then, the information processing devices 500 and 510 exchange beacons with each other (611 and 612). In this case, the beacon shown in FIG. 15 is used. For example, a beacon including Incentive Flag 521 and App ID 522 is used.
- the Incentive Flag 521 is a flag indicating that incentive management can be performed between the information processing apparatuses that exchange the beacons, or that incentive management is supported.
- the App ID 522 is identification information for specifying an application that can be used for incentive management. In the case of supporting a plurality of applications, the App ID 522 classifies and stores a plurality of application IDs.
- the information processing apparatuses 500 and 510 can recognize each other. For example, it is possible to recognize that the information processing apparatuses 500 and 510 have a function of exchanging incentives and can handle incentive exchanges. Then, the information processing apparatuses 500 and 510 are listed as partners to be linked as a pair, and mutual authentication starts (613). That is, when establishing a secure link between information processing apparatuses, mutual authentication is performed by sharing a password and generating a key using 4-way handshake (613).
- the information processing apparatuses 500 and 510 exchange the Mesh Peering open frame (614, 616) and the Mesh Peering confirm frame (615, 617).
- the Mesh Peer Link is established (618). That is, a mutual path is established.
- the Mesh Peering open frame and the Mesh Peering confirm frame shown in FIG. 16 are used.
- a frame including Security info 531 is used.
- an incentive management procedure is performed.
- FIG. 18 and FIG. 19 show transition examples of display screens displayed on the display unit 670 of the information processing apparatus 500 before transmitting the management setting request. These display screens are display screens for setting management contents.
- a menu screen 673 regarding the place is displayed as shown in FIG.
- a menu screen 674 related to time is displayed as shown in FIG.
- the management content desired by the mother is selected (pressed).
- An example of the display screen after this selection is shown in FIG.
- FIG. 20 shows an example of a display screen displayed on the display unit 670 of the information processing apparatus 500 when a management setting request is transmitted.
- the control unit of the information processing apparatus 500 manages the information processing apparatus 510.
- a setting request is transmitted (619).
- This management setting request is a request for the mother carrying the information processing apparatus 500 to request the child carrying the information processing apparatus 510 to stay at a designated place for a designated time.
- a management setting request frame shown in a of FIG. 17 is transmitted.
- setting contents for example, contents set using the menu screen 673 regarding the place set by the mother who holds the information processing apparatus 500 are stored.
- setting contents related to the time set by the mother who owns the information processing apparatus 500 for example, contents set using the menu screen 674.
- information for specifying the incentive set by the management setting request for example, the permitted application ID is stored in the incentive 543 shown in FIG.
- the control unit of the information processing apparatus 500 causes the display unit 670 to display the display screen illustrated in FIG. On this display screen, screens 676 and 677 for displaying setting contents corresponding to the transmitted management setting request are displayed.
- control unit of the information processing apparatus 510 that has received the management setting request from the information processing apparatus 500 (619) causes the display unit 680 to display the display screen illustrated in FIG. On this display screen, a screen 681 for displaying the setting contents corresponding to the received management setting request, a Yes button 682, and a No button 683 are displayed.
- the yes button 682 and the no button 683 are buttons for allowing the user (child) to confirm the setting contents corresponding to the received management setting request. That is, it is a button for making the child confirm the promise with the mother.
- the control unit of the information processing apparatus 510 transmits a management setting confirmation to the information processing apparatus 500 (620).
- the control unit of the information processing device 510 transmits a management setting confirmation after the processing for setting the information processing device 510 is completed.
- a management setting confirmation frame shown in FIG. 17b is transmitted.
- the contents actually set in the information processing apparatus 510 and the results thereof are stored.
- the setting is correct
- the information of the same name shown in FIG. 17A is stored in the setting distance 551, the setting time 552, and the incentive 553 shown in FIG.
- information indicating whether or not the information processing apparatus 510 has set the setting content corresponding to the management setting request from the information processing apparatus 500 is stored in the setting result 554 illustrated in FIG.
- the Yes button 682 shown in FIG. 21 is selected (pressed)
- information indicating the setting completion is stored in the setting result 554, and when the No button 683 is selected (pressed)
- the setting is not completed. Is stored in the setting result 554.
- the control unit of the information processing device 510 causes the display unit 680 to display the display screen illustrated in FIG. On this display screen, screens 684 to 686 for displaying the confirmed setting contents again are displayed. Thereby, the child can reconfirm the management setting easily.
- control unit of the information processing apparatus 500 that has received the management setting confirmation from the information processing apparatus 510 (620) causes the display unit 670 to display the display screen illustrated in FIG. On this display screen, screens 687 to 689 for displaying setting contents corresponding to the transmitted management setting request are displayed. Thereby, the mother can easily confirm that the management setting has been completed correctly.
- the control unit of the information processing apparatus 500 transmits an incentive corresponding to the transmitted management setting request to the information processing apparatus 510 (621). .
- this incentive for example, information including an application use permission key is transmitted.
- the control unit of the information processing apparatus 500 starts monitoring (622).
- control unit of the information processing apparatus 510 that has received the incentive from the information processing apparatus 500 (621) causes the display unit 680 to display the display screen illustrated in FIG. On this display screen, screens 690 to 693 for displaying conditions (setting contents) for enabling the incentive are displayed.
- the child who has the information processing apparatus 510 can use the permitted application while staying within the setting range designated by the mother.
- FIG. 28 is a sequence chart illustrating a communication processing example between devices included in the communication system 10 according to the second embodiment of the present technology.
- FIG. 28 shows an example of communication processing that assumes a case where both information processing apparatuses 500 and 510 move.
- the information processing apparatus 500 designates setting contents (631), and transmits a management setting request corresponding to the setting contents to the information processing apparatus 510 (632, 633). Each process corresponds to the process (619) shown in FIG.
- the information processing apparatus 510 performs setting processing based on the received management setting request (634). In this case, the information processing apparatus 510 starts observing frames from other information processing apparatuses existing in the setting range.
- the information processing apparatus 510 transmits a management setting confirmation (including a setting completion notification, a setting value report, and an acceptance notification) to the information processing apparatus 500 (635, 636).
- a management setting confirmation including a setting completion notification, a setting value report, and an acceptance notification
- Each process corresponds to the process (620) shown in FIG.
- the information processing apparatus 500 transmits an incentive to the information processing apparatus 510 (637, 638).
- Each process corresponds to the process (621) shown in FIG.
- the information processing apparatus 510 activates an application (for example, a game) permitted by the received incentive (639).
- an application for example, a game
- an application can be activated using an application use permission key.
- the information processing apparatus 510 determines whether or not the information processing apparatus 510 exists in the set range (640). Note that a determination method for determining whether or not it exists in the setting range will be described in detail with reference to FIG. Here, FIG. 28 will be described assuming that the information processing apparatus 510 is out of the setting range.
- the information processing device 510 permits the received incentive.
- the application is terminated (642). That is, the incentive transferred from the mother is invalidated.
- the application being used by the child may be stopped (or paused). In this case, it is possible to display a violation warning and that the application can be resumed if the violation is resolved.
- the information processing apparatus 510 transmits a violation notification to the information processing apparatus 500 (643, 644).
- the set distance 561 and the set time 562 shown in c of FIG. 17 correspond to each piece of information having the same name shown in a of FIG.
- information for example, application ID
- for invalidating the set incentive is stored in the incentive Disable info 563 shown in FIG.
- the information processing apparatus 500 When the violation communication is received (644), the information processing apparatus 500 notifies the user that the information processing apparatus 510 has gone out of the setting range (645). An example of this notification is shown in FIG.
- the control unit of the information processing apparatus 500 causes the display unit 670 to display the display screen illustrated in FIG. On this display screen, a screen 694 that displays a warning that there is a violation of the setting contents is displayed.
- the information processing apparatus 500 transmits a notification for returning to the setting range to the information processing apparatus 510 (646, 647).
- the information processing apparatus 510 notifies the user of a warning for returning to the setting range.
- An example of this warning is shown in FIG.
- the control unit of the information processing apparatus 510 causes the display unit 680 to display the display screen illustrated in FIG. On this display screen, a screen 695 for displaying a warning that there is a violation of the setting contents is displayed.
- FIG. 29 is a diagram schematically illustrating a peripheral device list 650 held by the information processing device 510 according to the second embodiment of the present technology.
- peripheral device list 650 measurement values related to information processing devices existing around the information processing device 510 are stored. For example, terminal identification information 651 and distance converted value 652 are stored.
- the terminal identification information 651 is identification information for identifying information processing apparatuses existing around the information processing apparatus 510.
- the distance conversion value 652 is a measurement value calculated based on a frame received from the information processing apparatus existing around the information processing apparatus 510.
- the control unit of the information processing device 510 acquires RSSI when receiving a frame from an information processing device existing in the vicinity. And the control part of the information processing apparatus 510 can calculate the distance to the information processing apparatus which exists in the periphery based on the acquired RSSI. That is, the acquired RSSI can be converted into a distance. Note that RTT or the like may be measured instead of RSSI, and the distance may be obtained using this value.
- control unit of the information processing device 510 stores the obtained distance in the distance converted value 652 of the peripheral device list 650, and uses the identification information of the information processing device for which the distance is obtained as the terminal identification of the peripheral device list 650. Stored in information 651.
- the control unit of the information processing apparatus 510 can determine whether the information processing apparatus 510 exists within the setting range or outside the setting range using the peripheral device list 650 generated as described above.
- the setting value of the setting range is set as a threshold value (for example, 5 m). Then, the control unit of the information processing device 510 compares the distance conversion value 652 of the peripheral device list 650 with the threshold value, and determines whether or not a value equal to or greater than the threshold value exists in the distance conversion value 652 of the peripheral device list 650. to decide.
- a threshold value for example, 5 m
- the distance conversion value 652 of the information processing devices having a predetermined ratio (for example, 30%) or more with respect to the number of all information processing devices stored in the peripheral device list 650 is equal to or more than the threshold value
- the determination is based on the ratio (for example, 30%) to the number of all information processing apparatuses around the information processing apparatus 510.
- the number of information processing devices that are equal to or greater than the threshold among the information processing devices around the information processing device 510 may be determined as a reference.
- the set values (for example, the ratio and the number) serving as the determination criteria can be set by a user operation.
- the information processing devices existing around the information processing device 510 may be switched or moved as time elapses. For this reason, it is preferable to update the peripheral device list 650 regularly or irregularly.
- FIG. 30 is a flowchart illustrating an example of a processing procedure of management setting processing by the information processing device 500 according to the second embodiment of the present technology.
- control unit of the information processing device 500 designates the setting content (step S751), and transmits a management setting request corresponding to the setting content to the information processing device 510 (step S752).
- step S753 the control unit of the information processing apparatus 500 determines whether or not a management setting confirmation has been received. If the management setting confirmation has not been received (step S753), the process returns to step S752.
- step S753 the control unit of the information processing device 500 transmits an incentive to the information processing device 510 (step S754).
- control unit of the information processing apparatus 500 determines whether a violation notification has been received (step S755). If no violation notification has been received (step S755), monitoring is continued.
- step S755 When the violation notification is received (step S755), the control unit of the information processing device 500 notifies the user that the information processing device 510 has gone out of the setting range (step S756).
- the control unit of the information processing device 500 transmits a notification for returning to the setting range to the information processing device 510 (step S757). Subsequently, the control unit of the information processing device 500 determines whether a reply to the notification for returning to the setting range (reply to the effect that the setting range has been returned) was within the time (step S758). If the reply (reply to the effect that it has returned to the set range) is within the time (step S758), the process returns to step S752. On the other hand, if the reply (reply to the effect of returning to the setting range) is not within the time (step S758), the management setting processing operation is terminated.
- FIG. 31 is a flowchart illustrating an example of a processing procedure of management processing by the information processing device 510 according to the second embodiment of the present technology.
- control unit of the information processing apparatus 510 determines whether or not a management setting request has been received (step S761). If the management setting request has not been received (step S761), monitoring is continued.
- step S761 When the management setting request is received (step S761), the control unit of the information processing apparatus 510 performs setting processing based on the received management setting request (step S762).
- control unit of the information processing device 510 transmits a management setting confirmation to the information processing device 500 (step S763).
- control unit of the information processing apparatus 510 determines whether or not an incentive has been received (step S764). If no incentive has been received (step S764), monitoring is continued.
- step S764 the control unit of the information processing apparatus 510 activates an application (for example, a game) permitted by the received incentive (step S765).
- an application for example, a game
- control unit of the information processing device 510 determines whether or not the information processing device 510 has gone out of the setting range (step S766). If the information processing apparatus 510 is not out of the set range (step S766), monitoring is continued.
- step S766 When the information processing apparatus 510 goes out of the setting range (step S766), the control unit of the information processing apparatus 510 invalidates the received incentive (step S767) and stops the application permitted by the incentive (step S767). S768).
- control unit of the information processing device 510 transmits a violation notification to the information processing device 500 (step S769).
- the control unit of the information processing apparatus 510 performs notification for returning to the setting range (step S770).
- This notification may be performed on the condition that a notification (notification for returning to the setting range) from the information processing apparatus 500 is received, or may be automatically performed before the notification is received.
- the control unit of the information processing device 510 determines whether or not the information processing device 510 has returned to the set range (step S771). If the information processing device 510 does not return within the set range (step S771), the control unit of the information processing device 510 retransmits the violation notification to the information processing device 500 and continues to perform the warning notification (step S772). ). If the information processing apparatus 510 does not return within the set range even after the predetermined time has elapsed, the management processing operation is terminated.
- step S771 When the information processing apparatus 510 returns to the setting range (step S771), the control unit of the information processing apparatus 510 transmits to the information processing apparatus 500 that the information processing apparatus 510 has returned to the setting range. (Step S773).
- the information processing apparatus can stay at the specific place.
- an incentive can be given according to a relative position between a place where one information processing apparatus is present and information processing apparatuses present in the vicinity thereof.
- a user for example, a relay station user or a child
- the information processing apparatus can make the intention ( For example, the user can stay with the user of the relay station and the child's intention.
- each information processing device manages incentives given from other information processing devices.
- an external device for example, a network server
- the incentive can be managed by an information processing system (for example, cloud computing) existing on the network.
- the information processing apparatuses 100 to 104, 200 to 205, 300, 500 to 504, and 510 to 516 are a smartphone, a tablet PC (Personal Computer), a notebook PC, a mobile terminal such as a portable game terminal or a digital camera, and a television.
- the information processing apparatuses 100 to 104, 200 to 205, 300, 500 to 504, 510 to 516 are M2M (Machine To Machine) such as a smart meter, a vending machine, a remote monitoring apparatus, or a POS (Point Of Sale) terminal. ) It may be realized as a terminal for communication (also referred to as an MTC (Machine Type Communication) terminal). Further, the information processing apparatuses 100 to 104, 200 to 205, 300, 500 to 504, and 510 to 516 are wireless communication modules (for example, integrated circuit modules configured by one die) mounted on these terminals. Also good.
- FIG. 32 is a block diagram illustrating an example of a schematic configuration of a smartphone 900 to which the technology according to the present disclosure may be applied.
- the smartphone 900 includes a processor 901, a memory 902, a storage 903, an external connection interface 904, a camera 906, a sensor 907, a microphone 908, an input device 909, a display device 910, a speaker 911, a wireless communication interface 913, an antenna switch 914, an antenna 915, A bus 917, a battery 918, and an auxiliary controller 919 are provided.
- the processor 901 may be, for example, a CPU (Central Processing Unit) or a SoC (System on Chip), and controls the functions of the application layer and other layers of the smartphone 900.
- the memory 902 includes a RAM (Random Access Memory) and a ROM (Read Only Memory), and stores programs and data executed by the processor 901.
- the storage 903 can include a storage medium such as a semiconductor memory or a hard disk.
- the external connection interface 904 is an interface for connecting an external device such as a memory card or a USB (Universal Serial Bus) device to the smartphone 900.
- the camera 906 includes, for example, an image sensor such as a CCD (Charge Coupled Device) or a CMOS (Complementary Metal Oxide Semiconductor), and generates a captured image.
- the sensor 907 may include a sensor group such as a positioning sensor, a gyro sensor, a geomagnetic sensor, and an acceleration sensor.
- the microphone 908 converts sound input to the smartphone 900 into an audio signal.
- the input device 909 includes, for example, a touch sensor that detects a touch on the screen of the display device 910, a keypad, a keyboard, a button, or a switch, and receives an operation or information input from a user.
- the display device 910 has a screen such as a liquid crystal display (LCD) or an organic light emitting diode (OLED) display, and displays an output image of the smartphone 900.
- the speaker 911 converts an audio signal output from the smartphone 900 into audio.
- the wireless communication interface 913 supports one or more wireless LAN standards such as IEEE802.11a, 11b, 11g, 11n, 11ac, and 11ad, and performs wireless communication.
- the wireless communication interface 913 can communicate with other devices via a wireless LAN access point in the infrastructure mode.
- the wireless communication interface 913 can directly communicate with other devices in the ad-hoc mode or the direct communication mode such as Wi-Fi Direct.
- Wi-Fi Direct unlike the ad hoc mode, one of two terminals operates as an access point, but communication is performed directly between the terminals.
- the wireless communication interface 913 can typically include a baseband processor, an RF (Radio Frequency) circuit, a power amplifier, and the like.
- the wireless communication interface 913 may be a one-chip module in which a memory that stores a communication control program, a processor that executes the program, and related circuits are integrated.
- the wireless communication interface 913 may support other types of wireless communication methods such as a short-range wireless communication method, a proximity wireless communication method, or a cellular communication method in addition to the wireless LAN method.
- the antenna switch 914 switches the connection destination of the antenna 915 among a plurality of circuits (for example, circuits for different wireless communication schemes) included in the wireless communication interface 913.
- the antenna 915 includes a single antenna element or a plurality of antenna elements (for example, a plurality of antenna elements constituting a MIMO antenna), and is used for transmission and reception of radio signals by the radio communication interface 913.
- It also has a wireless communication interface function for connecting to public lines such as IEEE802.16, 3GPP specifications (for example, W-CDMA, GSM (registered trademark), WiMAX, WiMAX2, LTE, LTE-A), etc. Can communicate with the line.
- public lines such as IEEE802.16, 3GPP specifications (for example, W-CDMA, GSM (registered trademark), WiMAX, WiMAX2, LTE, LTE-A), etc. Can communicate with the line.
- the smartphone 900 is not limited to the example of FIG. 32, and may include a plurality of antennas (for example, an antenna for a wireless LAN, an antenna for a proximity wireless communication system, an antenna for public line communication, etc.).
- the antenna switch 914 may be omitted from the configuration of the smartphone 900.
- the bus 917 connects the processor 901, memory 902, storage 903, external connection interface 904, camera 906, sensor 907, microphone 908, input device 909, display device 910, speaker 911, wireless communication interface 913, and auxiliary controller 919 to each other.
- the battery 918 supplies electric power to each block of the smartphone 900 shown in FIG. 32 via a power supply line partially shown by a broken line in the drawing.
- the auxiliary controller 919 operates the minimum necessary functions of the smartphone 900 in the sleep mode.
- control unit 150 described with reference to FIG. 2 may be implemented in the wireless communication interface 913.
- control unit 150 may be implemented in the processor 901 or the auxiliary controller 919.
- the smartphone 900 may operate as a wireless access point (software AP) when the processor 901 executes the access point function at the application level. Further, the wireless communication interface 913 may have a wireless access point function.
- FIG. 33 is a block diagram illustrating an example of a schematic configuration of a car navigation device 920 to which the technology according to the present disclosure can be applied.
- the car navigation device 920 includes a processor 921, a memory 922, a GPS (Global Positioning System) module 924, a sensor 925, a data interface 926, a content player 927, a storage medium interface 928, an input device 929, a display device 930, a speaker 931, and wireless communication.
- An interface 933, an antenna switch 934, an antenna 935, and a battery 938 are provided.
- the processor 921 may be a CPU or SoC, for example, and controls the navigation function and other functions of the car navigation device 920.
- the memory 922 includes RAM and ROM, and stores programs and data executed by the processor 921.
- the GPS module 924 measures the position (for example, latitude, longitude, and altitude) of the car navigation device 920 using GPS signals received from GPS satellites.
- the sensor 925 may include a sensor group such as a gyro sensor, a geomagnetic sensor, and an atmospheric pressure sensor.
- the data interface 926 is connected to the in-vehicle network 941 through a terminal (not shown), for example, and acquires data generated on the vehicle side such as vehicle speed data.
- the content player 927 reproduces content stored in a storage medium (for example, CD or DVD) inserted into the storage medium interface 928.
- the input device 929 includes, for example, a touch sensor, a button, or a switch that detects a touch on the screen of the display device 930, and receives an operation or information input from the user.
- the display device 930 has a screen such as an LCD or an OLED display, and displays a navigation function or an image of content to be reproduced.
- the speaker 931 outputs the navigation function or the audio of the content to be played back.
- the wireless communication interface 933 supports one or more wireless LAN standards such as IEEE802.11a, 11b, 11g, 11n, 11ac, and 11ad, and executes wireless communication.
- the wireless communication interface 933 can communicate with other devices via a wireless LAN access point in the infrastructure mode.
- the wireless communication interface 933 can directly communicate with other devices in the ad-hoc mode or the direct communication mode such as Wi-Fi Direct.
- the wireless communication interface 933 may typically include a baseband processor, an RF circuit, a power amplifier, and the like.
- the wireless communication interface 933 may be a one-chip module in which a memory that stores a communication control program, a processor that executes the program, and related circuits are integrated.
- the wireless communication interface 933 may support other types of wireless communication systems such as a short-range wireless communication system, a proximity wireless communication system, or a cellular communication system.
- the antenna switch 934 switches the connection destination of the antenna 935 among a plurality of circuits included in the wireless communication interface 933.
- the antenna 935 includes a single antenna element or a plurality of antenna elements, and is used for transmission and reception of a radio signal by the radio communication interface 933.
- the car navigation apparatus 920 may include a plurality of antennas.
- the antenna switch 934 may be omitted from the configuration of the car navigation device 920.
- the battery 938 supplies power to each block of the car navigation device 920 shown in FIG. 33 via a power supply line partially shown by a broken line in the drawing. Further, the battery 938 stores electric power supplied from the vehicle side.
- control unit 150 described with reference to FIG. 2 may be implemented in the wireless communication interface 933.
- the control unit 150 illustrated in FIG. 2 may be implemented in the processor 921.
- the technology according to the present disclosure may be realized as an in-vehicle system (or vehicle) 940 including one or more blocks of the car navigation device 920 described above, an in-vehicle network 941, and a vehicle side module 942.
- vehicle-side module 942 generates vehicle-side data such as vehicle speed, engine speed, or failure information, and outputs the generated data to the in-vehicle network 941.
- the processing procedure described in the above embodiment may be regarded as a method having a series of these procedures, and a program for causing a computer to execute these series of procedures or a recording medium storing the program. You may catch it.
- a recording medium for example, a CD (Compact Disc), an MD (MiniDisc), a DVD (Digital Versatile Disc), a memory card, a Blu-ray disc (Blu-ray (registered trademark) Disc), or the like can be used.
- a plurality of information processing apparatuses perform wireless communication on a one-to-one basis, thereby staying at a specific place in a first information processing apparatus constituting the plurality of information processing apparatuses in a network in which the plurality of information processing apparatuses are connected to each other
- An information processing apparatus comprising: a control unit configured to transmit a stay request for requesting and to give an incentive to the first information processing apparatus on condition that the first information processing apparatus stays at the specific place.
- the first information processing device is a relay device that relays the data when the information processing device receives data transmitted from a second information processing device constituting the plurality of information processing devices, The control unit grants the incentive to the first information processing apparatus on the condition that the first information processing apparatus stays at the specific location until reception of the data is completed.
- the information processing apparatus described.
- the control unit determines the incentive based on the number of information processing devices that can participate in reception of the data among the information processing devices configuring the plurality of information processing devices. Information processing device.
- the information processing apparatus determines the incentive based on a time during which the first information processing apparatus stays at the specific place.
- the control unit activates a specific application in the first information processing apparatus by giving the incentive to the first information processing apparatus.
- the control unit according to any one of (1) to (6), wherein when it is detected that the first information processing apparatus is out of a range of the specific location, the incentive is invalidated. Information processing device.
- the control unit issues a warning notification for the first information processing device to return to the specific location.
- the information processing apparatus according to any one of (1) to (7), which is transmitted to the information processing apparatus.
- a plurality of information processing apparatuses perform wireless communication on a one-to-one basis, and stay in a specific place from the first information processing apparatus constituting the plurality of information processing apparatuses in a network in which the plurality of information processing apparatuses are connected to each other
- a control unit that performs control to perform processing based on an incentive given from the first information processing apparatus on the condition that the information processing apparatus stays at the specific place when a stay request that requests that is received Information processing apparatus.
- the information processing apparatus according to (9), wherein the control unit activates a specific application based on the incentive.
- a plurality of information processing apparatuses perform wireless communication on a one-to-one basis, thereby staying at a specific place in a first information processing apparatus constituting the plurality of information processing apparatuses in a network in which the plurality of information processing apparatuses are connected to each other
- An information processing method comprising: providing an incentive to the first information processing apparatus on condition that the first information processing apparatus stays at the specific place.
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Abstract
Description
1.第1の実施の形態(情報処理装置間で通信を行うための中継局にインセンティブを与えてその通信中に特定場所に滞在してもらう例)
2.第2の実施の形態(情報処理装置を所有するユーザを特定場所に滞在させる例)
3.応用例
[通信システムの構成例]
図1は、本技術の第1の実施の形態における通信システム10のシステム構成例を示す図である。
図2は、本技術の第1の実施の形態における情報処理装置100の内部構成例を示すブロック図である。なお、他の情報処理装置(情報処理装置101乃至104、200乃至205、300)の内部構成についても、情報処理装置100と略同一であるため、ここでは、情報処理装置100についてのみ説明し、他の情報処理装置の説明を省略する。
図3は、本技術の第1の実施の形態における通信システム10を構成する各装置間における通信処理例を示すシーケンスチャートである。なお、図3では、情報処理装置100、200、300が、図1に示すトポロジで存在している場合における通信処理例を示す。
図4は、本技術の第1の実施の形態における通信システム10を構成する中継局によるインセンティブの算出例を示す図である。図4では、インセンティブのウエイト(Weight)の計算方法を示す。
W=w(t,n,d) … 式1
(R1-R3)<D0<R1
(R1-R2)<D1<(R1-R3)
0<D2<(R1-R2)
RSSI_A[dBm]≒RSSI_C[dBm]
図5および図6は、本技術の第1の実施の形態における情報処理装置300によるデータ中継処理の処理手順の一例を示すフローチャートである。
図7は、本技術の第1の実施の形態における情報処理装置200によるデータ受信処理の処理手順の一例を示すフローチャートである。
図8は、本技術の第1の実施の形態における情報処理装置100によるデータ送信処理の処理手順の一例を示すフローチャートである。
以上では、中継局(情報処理装置300)がインセンティブを算出する例を示した。ここで、滞在要求を行う情報処理装置(情報処理装置200)がインセンティブを算出するようにしてもよい。そこで、以下では、滞在要求を行う情報処理装置(情報処理装置200)がインセンティブを算出する例を示す。
図9は、本技術の第1の実施の形態における通信システム10を構成する各装置間における通信処理例を示すシーケンスチャートである。なお、図9は、図3の一部を変形したものである。このため、図3と共通する部分については、図3と同一の符号を付してこれらの説明の一部を省略する。
図10は、本技術の第1の実施の形態における情報処理装置300によるデータ中継処理の処理手順の一例を示すフローチャートである。なお、図10は、図5の一部を変形したものである。このため、図5と共通する部分については、図5と同一の符号を付してこれらの説明の一部を省略する。
図11は、本技術の第1の実施の形態における情報処理装置200によるデータ受信処理の処理手順の一例を示すフローチャートである。なお、図11は、図7の一部を変形したものである。このため、図7と共通する部分については、図7と同一の符号を付してこれらの説明の一部を省略する。
本技術の第1の実施の形態では、情報処理装置間で通信を行うための中継局にインセンティブを与えてその通信中に特定場所に滞在してもらう例を示した。ここで、例えば、スーパーマーケット等の広い商業施設において、家族で買い物をするような場合に、親は、子供がある特定場所(例えば、商業施設内の遊び場)にいることを希望することが想定される。しかしながら、子供は、親または他の人(商業施設の担当者)が監視をしない限り、親が希望する範囲内に滞在することは少ないと想定される。
図12は、本技術の第2の実施の形態における情報処理装置500および510からなる通信システム20の一例を示す図である。
図13は、本技術の第2の実施の形態における通信システム30のシステム構成例を示す図である。
図14は、本技術の第2の実施の形態における通信システム10を構成する各装置間における通信処理例を示すシーケンスチャートである。なお、図14では、情報処理装置500、510が、図13に示すトポロジで存在している場合における通信処理例を示す。また、図14では、情報処理装置500および510間で行われるペアリング(Peering)の一例を示す。
図15乃至図17は、本技術の第2の実施の形態における通信システム30を構成する各情報処理装置間でやり取りされるフレームの構成例を示す図である。
図18乃至図26は、本技術の第2の実施の形態における通信システム30を構成する各情報処理装置間に表示される表示画面例を示す図である。なお、これらの各表示画面例については、図27、図28を参照して詳細に説明する。
図27は、本技術の第2の実施の形態における通信システム10を構成する各装置間における通信処理例を示すシーケンスチャートである。なお、図27では、情報処理装置500、510が、図27に示すトポロジで存在している場合における通信処理例を示す。また、図27では、情報処理装置500および510間でペアリングを行い、インセンティブ管理を開始するまでの例を示す。
図28は、本技術の第2の実施の形態における通信システム10を構成する各装置間における通信処理例を示すシーケンスチャートである。なお、図28では、情報処理装置500、510の双方が移動する場合を想定する通信処理例を示す。
図29は、本技術の第2の実施の形態における情報処理装置510により保持される周辺装置リスト650を模式的に示す図である。
図30は、本技術の第2の実施の形態における情報処理装置500による管理設定処理の処理手順の一例を示すフローチャートである。
図31は、本技術の第2の実施の形態における情報処理装置510による管理処理の処理手順の一例を示すフローチャートである。
本開示に係る技術は、様々な製品へ応用可能である。例えば、情報処理装置100乃至104、200乃至205、300、500乃至504、510乃至516は、スマートフォン、タブレットPC(Personal Computer)、ノートPC、携帯型ゲーム端末若しくはデジタルカメラなどのモバイル端末、テレビジョン受像機、プリンタ、デジタルスキャナ若しくはネットワークストレージなどの固定端末、又はカーナビゲーション装置などの車載端末として実現されてもよい。また、情報処理装置100乃至104、200乃至205、300、500乃至504、510乃至516は、スマートメータ、自動販売機、遠隔監視装置又はPOS(Point Of Sale)端末などの、M2M(Machine To Machine)通信を行う端末(MTC(Machine Type Communication)端末ともいう)として実現されてもよい。さらに、情報処理装置100乃至104、200乃至205、300、500乃至504、510乃至516は、これら端末に搭載される無線通信モジュール(例えば、1つのダイで構成される集積回路モジュール)であってもよい。
図32は、本開示に係る技術が適用され得るスマートフォン900の概略的な構成の一例を示すブロック図である。スマートフォン900は、プロセッサ901、メモリ902、ストレージ903、外部接続インタフェース904、カメラ906、センサ907、マイクロフォン908、入力デバイス909、表示デバイス910、スピーカ911、無線通信インタフェース913、アンテナスイッチ914、アンテナ915、バス917、バッテリー918及び補助コントローラ919を備える。
図33は、本開示に係る技術が適用され得るカーナビゲーション装置920の概略的な構成の一例を示すブロック図である。カーナビゲーション装置920は、プロセッサ921、メモリ922、GPS(Global Positioning System)モジュール924、センサ925、データインタフェース926、コンテンツプレーヤ927、記憶媒体インタフェース928、入力デバイス929、表示デバイス930、スピーカ931、無線通信インタフェース933、アンテナスイッチ934、アンテナ935及びバッテリー938を備える。
(1)
複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置に特定場所に滞在することを要求する滞在要求を送信し、前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置にインセンティブを付与する制御を行う制御部を具備する情報処理装置。
(2)
前記第1情報処理装置は、前記複数の情報処理装置を構成する第2情報処理装置から送信されるデータを当該情報処理装置が受信する場合に前記データを中継する中継装置であり、
前記制御部は、前記データの受信が完了するまでの間、前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置に前記インセンティブを付与する
前記(1)に記載の情報処理装置。
(3)
前記制御部は、当該情報処理装置と前記第1情報処理装置と前記第2処理装置との相対的な位置関係に基づいて、前記インセンティブを決定する前記(2)に記載の情報処理装置。
(4)
前記制御部は、前記複数の情報処理装置を構成する各情報処理装置のうちで前記データの受信に関与が可能な情報処理装置の数に基づいて前記インセンティブを決定する前記(2)に記載の情報処理装置。
(5)
前記制御部は、前記第1情報処理装置が前記特定場所に滞在する時間に基づいて、前記インセンティブを決定する前記(1)または(2)に記載の情報処理装置。
(6)
前記制御部は、前記第1情報処理装置に前記インセンティブを付与することにより前記第1情報処理装置において特定アプリケーションを起動させる前記(1)から(5)のいずれかに記載の情報処理装置。
(7)
前記制御部は、前記第1情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記インセンティブを無効化する前記(1)から(6)のいずれかに記載の情報処理装置。
(8)
前記制御部は、前記第1情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記第1情報処理装置が前記特定場所に戻るための警告通知を前記第1情報処理装置に送信する前記(1)から(7)のいずれかに記載の情報処理装置。
(9)
複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置から特定場所に滞在することを要求する滞在要求を受信した場合に、当該情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置から付与されるインセンティブに基づく処理を行う制御を行う制御部を具備する情報処理装置。
(10)
前記制御部は、前記インセンティブに基づいて特定アプリケーションを起動させる前記(9)に記載の情報処理装置。
(11)
前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記特定アプリケーションを停止または終了させる前記(10)に記載の情報処理装置。
(12)
前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記インセンティブを無効化させる前記(9)から(11)のいずれかに記載の情報処理装置。
(13)
前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、その旨を前記第1情報処理装置に送信する前記(9)から(12)のいずれかに記載の情報処理装置。
(14)
複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置に特定場所に滞在することを要求する滞在要求を送信する手順と、
前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置にインセンティブを付与する手順と
を具備する情報処理方法。
100~104、200~205、300、431~433、500~504、510~516 情報処理装置
110 無線通信部
120 アンテナ
130 I/Oインタフェース
140 記憶部
150 制御部
160 操作受付部
170、670、680 表示部
181 状態検出部
182 音声出力部
190 バス
900 スマートフォン
901 プロセッサ
902 メモリ
903 ストレージ
904 外部接続インタフェース
906 カメラ
907 センサ
908 マイクロフォン
909 入力デバイス
910 表示デバイス
911 スピーカ
913 無線通信インタフェース
914 アンテナスイッチ
915 アンテナ
917 バス
918 バッテリー
919 補助コントローラ
920 カーナビゲーション装置
921 プロセッサ
922 メモリ
924 GPSモジュール
925 センサ
926 データインタフェース
927 コンテンツプレーヤ
928 記憶媒体インタフェース
929 入力デバイス
930 表示デバイス
931 スピーカ
933 無線通信インタフェース
934 アンテナスイッチ
935 アンテナ
938 バッテリー
941 車載ネットワーク
942 車両側モジュール
Claims (14)
- 複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置に特定場所に滞在することを要求する滞在要求を送信し、前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置にインセンティブを付与する制御を行う制御部を具備する情報処理装置。
- 前記第1情報処理装置は、前記複数の情報処理装置を構成する第2情報処理装置から送信されるデータを当該情報処理装置が受信する場合に前記データを中継する中継装置であり、
前記制御部は、前記データの受信が完了するまでの間、前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置に前記インセンティブを付与する
請求項1記載の情報処理装置。 - 前記制御部は、当該情報処理装置と前記第1情報処理装置と前記第2処理装置との相対的な位置関係に基づいて、前記インセンティブを決定する請求項2記載の情報処理装置。
- 前記制御部は、前記複数の情報処理装置を構成する各情報処理装置のうちで前記データの受信に関与が可能な情報処理装置の数に基づいて前記インセンティブを決定する請求項2記載の情報処理装置。
- 前記制御部は、前記第1情報処理装置が前記特定場所に滞在する時間に基づいて、前記インセンティブを決定する請求項1記載の情報処理装置。
- 前記制御部は、前記第1情報処理装置に前記インセンティブを付与することにより前記第1情報処理装置において特定アプリケーションを起動させる請求項1記載の情報処理装置。
- 前記制御部は、前記第1情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記インセンティブを無効化する請求項1記載の情報処理装置。
- 前記制御部は、前記第1情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記第1情報処理装置が前記特定場所に戻るための警告通知を前記第1情報処理装置に送信する請求項1記載の情報処理装置。
- 複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置から特定場所に滞在することを要求する滞在要求を受信した場合に、当該情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置から付与されるインセンティブに基づく処理を行う制御を行う制御部を具備する情報処理装置。
- 前記制御部は、前記インセンティブに基づいて特定アプリケーションを起動させる請求項9記載の情報処理装置。
- 前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記特定アプリケーションを停止または終了させる請求項10記載の情報処理装置。
- 前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、前記インセンティブを無効化させる請求項9記載の情報処理装置。
- 前記制御部は、当該情報処理装置が前記特定場所の範囲外に出たことが検出された場合には、その旨を前記第1情報処理装置に送信する請求項9記載の情報処理装置。
- 複数の情報処理装置が1対1で無線通信を行うことにより前記複数の情報処理装置が相互に接続されるネットワークにおける前記複数の情報処理装置を構成する第1情報処理装置に特定場所に滞在することを要求する滞在要求を送信する手順と、
前記第1情報処理装置が前記特定場所に滞在することを条件に前記第1情報処理装置にインセンティブを付与する手順と
を具備する情報処理方法。
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