Abstract:
A temperature measuring apparatus includes: an infrared measuring unit; a guide light emitting unit; an optical unit that (i) allows the guide light emitted by the guide light emitting unit to travel toward the object, and (ii) allows the infrared radiation radiated from the object to enter the infrared measuring unit; a position adjusting unit that makes a position adjustment of irradiating the measurement target region with the guide light emitted by the guide light emitting unit while keeping within a predetermined range a misalignment between an optical axis of the infrared radiation entering the infrared measuring unit from the measurement target region and an optical axis of the guide light emitted by the guide light emitting unit; and a focusing unit that adjusts a focus of the infrared measuring unit and a focus of the guide light emitting unit.
Abstract:
A method of controlling a device includes: obtaining information related to a body surface temperature of a person by detecting the body surface temperature of the person by a thermal camera, estimating a deep body temperature of the person on the basis of the information related to the body surface temperature of the person, detecting the person's condition on the basis of the deep body temperature of the person, and controlling an operation of the device according to the detected person's condition.
Abstract:
A processing method for a processing apparatus is disclosed. The processing method causes a computer of the processing apparatus to perform a process. The process includes detecting a position and a sleep state of a passenger inside a vehicle on a basis of information indicating a state of space including seats of the vehicle. The information is obtained from a sensor provided inside the vehicle. The process also includes notifying an operator of the vehicle of the detected position and the detected sleep state of the passenger. Further, the process also includes transmitting, upon detecting an operation, the operation being performed by the operator of the vehicle in response to the notifying, for controlling a device near the detected position of the passenger, a control command corresponding to the operation to the device.
Abstract:
A method for predicting an arousal level used by a computer of an arousal level prediction apparatus that predicts an arousal level of a user includes obtaining current biological information regarding the user detected by a first sensor, calculating a current arousal level of the user on the basis of the current biological information, obtaining current environment information indicating a current environment around the user detected by a second sensor, predicting a future arousal level, which is an arousal level a certain period of time later, on the basis of the current arousal level and the current environment information, and (i) issuing a notification to the user or (ii) controlling another device, on the basis of the future arousal level.
Abstract:
A method for predicting an arousal level used by a computer of an arousal level prediction apparatus that predicts an arousal level of a user includes obtaining current biological information regarding the user detected by a first sensor, calculating a current arousal level of the user on the basis of the current biological information, obtaining current environment information indicating a current environment around the user detected by a second sensor, predicting a future arousal level, which is an arousal level a certain period of time later, on the basis of the current arousal level and the current environment information, and (i) issuing a notification to the user or (ii) controlling another device, on the basis of the future arousal level.
Abstract:
A processing method for a processing apparatus, the processing method causing a computer of the processing apparatus to execute steps comprising: detecting a position and a state of a passenger inside a vehicle on the basis of information indicating a state of space including seats of the vehicle, the information obtained from a sensor provided inside the vehicle, notifying an operator of the vehicle of the detected position and state of the passenger, and transmitting, upon detecting an operation, which is performed by the operator of the vehicle, for controlling a device near the detected position of the passenger, a control command corresponding to the operation to the device.
Abstract:
A sensing method includes acquiring a thermal image of an object space, identifying an object within the object space included in the thermal image, based on the acquired thermal image, presenting to a user the thermal image to which information, indicating identification results of the identifying, has been added, and accepting a response as to the presented thermal image to which the information has been added. And at least one of the acquiring, the identifying, the presenting, and the accepting is performed by a processor.
Abstract:
A sensor assembly includes: a sensor including pixels that are aligned in a predetermined direction, the pixels being for detecting an electromagnetic wave; and a lens that forms, in a detector plane on the sensor, an image according to the electromagnetic wave, wherein the lens has an f-number in a first direction and an f-number in a second direction, the f-number in the first direction being different from the f-number in the second direction, the first direction being orthogonal to the predetermined direction in a plane parallel to the detector plane, and the second direction being the predetermined direction. For example, the f-number of the lens in the first direction is smaller than the f-number of the lens in the second direction.
Abstract:
A thermal image sensor including: a plurality of infrared detector elements that detect infrared light in a detection area; and rotors that scan the detection area in a scanning direction to detect, with the plurality of infrared detector elements, infrared light in an area to be captured as a single thermal image. The plurality of infrared detector elements include infrared detector elements arranged in mutually different positions in a rotational direction corresponding to the scanning direction of the plurality of infrared detector elements.