Abstract:
An image capture apparatus 1 includes an image capture unit 16, a first communication unit 20, and an image capture control unit 53. The first communication unit 20 receives data indicating a movement of a predetermined object from a sensor which is attached to the object. The image capture control unit 53 controls a recording frame rate of a plurality of images captured by the image capture unit 16 based on the data received by the first communication unit 20. It is thereby possible with the image capture apparatus 1 to control so as to be a recording frame rate of an image corresponding to a movement of an object, since it is possible to perform image capture control based on data indicating a movement of the object thus received.
Abstract:
A measurement device includes an acceleration sensor, a memory, and one or more processors that follow instructions saved in the memory to execute following processing of: acquiring time-series acceleration data output by the acceleration sensor; specifying, based on the acquired time-series acceleration data, first and second timing at which acceleration goes above and below an acceleration reference value; determining a reference range for a time width from the first to second timing based on amplitude of an acceleration waveform corresponding to the time-series acceleration data and a first piece count of at least either the first or second timing within predetermined time; determining whether the time width falls within the determined reference range; and counting one step for a partial waveform from the first to second timing in the acceleration waveform when the time width is determined as falling within the reference range.
Abstract:
A measurement device includes: an accelerometer; a storage; and at least one processor. In accordance with instructions stored in the storage, the processor acquires data of an acceleration waveform during walking or running of a user from the accelerometer, identifies a time width between a first timing and a second timing based on the acceleration waveform, and counts steps based on the acceleration waveform. The acceleration waveform changes from a negative value to a positive value at the first timing. The acceleration waveform changes from a positive value to a negative value at the second timing. When a predetermined condition is satisfied in counting the steps, the processor counts the acceleration waveform whose time width is greater than a predetermined threshold as two steps and count the acceleration waveform whose time width is smaller than the predetermined threshold as one step.