Abstract:
A method is provided for controlling a networked information apparatus that includes a touch panel display. An electric shutter device is controlled over the network to open and close a shutter remotely. A processor of the information apparatus causes display of an operation icon on a display screen of the information apparatus, and the operation icon causes an operation screen for the electric shutter device to be displayed. When a swipe operation is sensed on the operation screen, a movement control command is output for moving the shutter in a swipe direction of the swipe operation, in which positional information indicating an end position in a vertical direction of the shutter of the electric shutter device is received. State information representing the end position of an end portion of the shutter is displayed in a region corresponding to the shutter image in accordance with the received positional information.
Abstract:
An unregistered first subject device is managed in memory as one or more subject devices. A room selection screen for selection of a room where the unregistered first subject device is installed, is displayed on a display. The unregistered first subject device is associated with a first room and managed as a registered first subject device, based on selection of the first room from the room selection screen. A room list screen including a first room icon representing the first room is generated, and displayed on the display.
Abstract:
A method includes: inputting information indicating power usage; generating a differential value between i) a first cumulative value of power usage corresponding to a first user ID and ii) a second cumulative value of power usage corresponding to a second user ID in a prescribed period; generating a first conversion value by converting the differential value to a use time of an electric home appliance of a first type corresponding to the first user ID; generating a first electricity bill value by converting the difference value to an electricity bill; generating display data indicating that the first electricity bill value corresponds to the first conversion value; and a transmitting unit that transmits the display data.
Abstract:
A control method causes a computer of an information apparatus to: display a display screen representing a floor plan on a display; display on the display screen device icons, the device icons including a dehumidifier icon; when selection of the dehumidifier icon is sensed, display on the display an operation screen for operating a dehumidifier corresponding to the dehumidifier icon, the operation screen being displayed on the display screen and outside of a region corresponding to a room where the selection of the dehumidifier icon is sensed; output a control command for operating the dehumidifier to a network based on an operation on the operation screen; and display an operation state of the dehumidifier in the region corresponding to the room where the selection of the dehumidifier icon is sensed based on the operation on the operation screen.
Abstract:
A method causes a computer of a communication device to: acquire appointment available dates and times at a specialized institution; determine candidate appointment dates and times at the specialized institution by excluding each date and time, on which a plan of a user is stored in the communication device, from the acquired appointment available dates and times; display each display representing each candidate appointment time based on the determined candidate appointment dates and times, in each region corresponding to each day represented in calendar data; and display an appointment screen on a display when selection of one region is detected, the one region corresponding to one day represented in the calendar data and representing one candidate appointment time, the appointment screen being used for setting the one candidate appointment date and time corresponding to the selected one region as an appointment date and time at the specialized institution.
Abstract:
An anomaly detection device includes: an obtainer that obtains vehicle information related to the status of a vehicle and including location data indicating the location of the vehicle; a model storage that stores, for each of a plurality of cells of a grid imposed on a map, an evaluation model for evaluating the vehicle information of the vehicle located at the cell; and a determiner that calculates, based on the vehicle information and evaluation models each being the evaluation model and corresponding to evaluation cells including a first cell including the location of the vehicle indicated in the location data and one or more second cells each having a predetermined positional relationship with the first cell, an anomaly level indicating a degree of anomaly of the vehicle information, determines, based on the anomaly level, whether the vehicle information is anomalous, and outputs a determination result.
Abstract:
An information processing apparatus connected to one or more vehicles and a threat information server storing pieces of threat information. The information processing apparatus includes: a processor; and a memory including at least one set of instructions that, when executed by the processor, causes the processor to perform: obtaining a detection result of an attack on one of the vehicles; (a) determining whether the attack is included in any one of the pieces of threat information; (b) when the attack is included therein, determining whether the resolution state to the attack included in the one of the pieces of threat information indicates that the attack has not been resolved or has been resolved; (c) deciding a processing priority level of the attack, based on a determination result in (a) and a determination result in (b); and (d) outputting the processing priority level decided.
Abstract:
A vehicle monitoring apparatus includes: a first communicator that receives specifying information for specifying a target vehicle from a server; and an acquirer that acquires driving information from the target vehicle, the driving information being information regarding driving of the target vehicle specified by the specifying information received by the first communicator. The first communicator transmits the driving information acquired by the acquirer to the server. For example, the acquirer may acquire the driving information obtained from the target vehicle through communication.
Abstract:
An anomaly detection device is located between a network and a first ECU in the plurality of ECUs, and includes: a communication circuit; a processor; and a memory including a set of instructions that, when executed, causes the processor to perform operations including: receiving a message from the first ECU and transmitting the message to the network, and receiving a message from the network and transmitting the message to the first ECU, using the communication circuit; holding, in the memory, a received ID list; when an ID of the message received by the communication circuit from the network is not included in the received ID list, adding the ID to the received ID list; and when an ID of the message received by the communication circuit from the first ECU is included in the received ID list, causing the communication circuit not to transmit the message to the network.
Abstract:
A gateway that notifies a fraud detection server located outside a vehicle of information about an in-vehicle network system including an in-vehicle network includes: a priority determiner that determines a priority using at least one of: a state of the vehicle including the in-vehicle network system; an identifier of a message communicated on the in-vehicle network; and a result of fraud detection performed on the message; a frame transmitter-receiver that transmits and receives the message communicated on the in-vehicle network; a frame interpreter that extracts information about the in-vehicle network based on the message received by the frame transmitter-receiver; and a frame uploader that notifies the fraud detection server of notification information including the priority and the information about the in-vehicle network.