Abstract:
A MTC-IWF entity (1) includes a messaging unit (101). The messaging unit (101) operates to receive a control message including first load information from a PCRF (60) through a signaling interface between the PCRF (60) and the MTC-IWF entity (1). The first load information indicates a load status of a user plane or a control plane in a GGSN (57), an S-GW (58), or a P-GW (57). It is thus possible, for example, to facilitate collecting, by an MTC-IWF or an SCS, load information regarding a PLMN.
Abstract:
A wireless communication system includes an entity (1) configured to send a charging rule generation indication to a PCEF (55) in response to receiving, from an SCS (2), a device action request containing trigger information to be sent to an MTC device (3). The charging rule generation indication contains a first address specifying a node or a network with which the MTC device communicates when the MTC device receives the trigger information. It is thus possible, for example, to allow charging a communication fee for the MTC device to a party having used the MTC device.
Abstract:
An exemplary object of the present invention is to provide a communication system capable of efficiently and equally allocating communication opportunities. A communication system according to the present invention includes: a connection control apparatus (20) that allows, when a connection request message that requests a connection to a network (40) received from a communication apparatus (10) included in a plurality of communication apparatuses in which a synchronous communication is limited corresponds to a message that requests a temporary communication, the communication apparatus (10) to be temporarily connected to the network (40); and a communication timing control apparatus (30) that transmits a communication allowable timing notification message indicating a communication timing to the communication apparatus (10) while the communication apparatus (10) is allowed to be temporarily connected to the network (40).
Abstract:
An RAN node (2) is configured to communicate with a device (1) equipped with an embedded UICC in an initial state. Furthermore, the RAN node (2) is configured to communicate with a provisioning network (3) arranged for provisioning of the embedded UICC, and a core network different from the provisioning network. Still furthermore, the RAN node (2) is configured to transmit an attach request message received from the device (1) to the provisioning network (6) instead of the core network (3) of an initial MNO. As a result of this, for example, the device equipped with the eUICC in the initial state can be safely connected to the network operated by the initial MNO.
Abstract:
An information processing system (100) according to the present disclosure includes communication status acquisition means (101) for acquiring a communication status, the communication status being one when a first terminal receives a video image including a subject from a second terminal through a network, and instruction means (102) for outputting instruction information for guiding at least one of a user of the first terminal, a user of the second terminal, and the subject to at least one of the first and second terminals based on the) acquired communication status. Further, the first terminal includes first display means for displaying a video image of the subject and displaying the instruction information from the instruction means, and the second terminal includes second display means for displaying the instruction information from the instruction means.
Abstract:
A video quality estimation apparatus (100) according to the present disclosure includes a first collection unit (101) configured to collect network quality information about a network pertaining to distribution of a video, a second collection unit (102) configured to collect video quality information about the video, and an estimation unit (103) configured to estimate a first bit rate corresponding to a resolution of the video based on the network quality information and the video quality information.
Abstract:
A video analysis apparatus and the like with improved video analysis accuracy are provided. The video analysis apparatus includes a first video analysis unit and a second video analysis unit. The first video analysis unit is configured to distribute frames to the first video analysis unit or the second video analysis unit, detect a target object in frames which are distributed to be analyzed in the first video analysis unit, and acquire information on movement associated with the detected target object, and transmitting the information on the movement and a detection result in the first detection unit to the second video analysis unit. The second video analysis unit is configured to detect a target object in frames from the distribution unit, and adjust the detection result of the first detection unit based on a detection result in the second detection unit and the information on the movement.
Abstract:
A vehicle control unit controls automated driving of a target vehicle on the basis of first information obtained by a sensor of the target vehicle. An analysis unit analyzes state information of the target vehicle on the basis of the first information obtained by the sensor of the target vehicle, and second information obtained by a sensor outside the target vehicle. A specification unit specifies a control policy of the target vehicle on the basis of the analyzed state information.
Abstract:
A video reception unit obtains a first video and a second video that are different in an imaging position from each other. An important video determination unit determines a video having a higher degree of importance on the basis of the first video and the second video. A video adjustment report unit transmits a transmission video adjustment report that is used to adjust qualities of the first video and the second video in accordance with a result of determining a degree of importance. A first video adjustment unit adjusts the first video on the basis of the transmission video adjustment report. A second video adjustment unit adjusts the second video on the basis of the transmission video adjustment report.
Abstract:
An image reception unit receives an internal image from a mobile object. An accident risk prediction unit predicts a risk of occurrence of an accident inside the mobile object based on the internal image and situation information indicating a situation of the mobile object. A quality determination unit determines internal image quality information indicating quality of the internal image based on a result of the predicted risk of the inside accident. A quality adjustment unit adjusts the quality of the internal image based on the internal image quality information.