Abstract:
A motion analyzing apparatus 1 includes a data acquiring unit 51, a top detecting unit 52, an address detecting unit 53, a finish detecting unit 54, an axis correcting unit 55, a half detecting unit 56, and an impact detecting unit 57. The data acquiring unit 51 acquires motion information including an operation direction in a series of operations of a target object measured by a sensor unit. The top detecting unit 52 acquires a specific time point at which the operation direction of a target object is reversed in the motion information acquired by the data acquiring unit 51. The address detecting unit 53 or the finish detecting unit 54 specifies a start time point or an end time point of a series of operations by using a specific time point.
Abstract:
Data receiving or sending is accomplished without using a wireless transmitter.An image processing apparatus comprises an obtainer and an acquirer. The obtainer obtains video information including video of a measurement target and a visible light signal that includes measurement information of the measurement target measured by a measuring apparatus attached to the measurement target, the visible light signal being transmitted by the measuring apparatus. The acquirer acquires the measurement information from the visible light signal included in the video information obtained by the obtainer.
Abstract:
A programming device including a shape indication section which receives at least one first user operation for indicating a shape by specifying two or more portions among a plurality of tangible portions arranged at different positions with each other in a planar direction; and a control section which generates a command list for moving a control target section along the indicated shape.
Abstract:
A track estimation device includes: a reliability determination unit configured to determine the reliability of satellite positioning information; an update timing determination unit configured to determine the timing of updating a parameter to estimate track of cycling based on the reliability of satellite positioning information; and an update unit configured to update the parameter based on a result of the timing determination. When the reliability determination unit determines that reliability of the satellite positioning information is low, the track estimation unit estimates the track based on the parameter by autonomous navigation.
Abstract:
In an exercise support device of the present invention, acceleration signals in three axis directions including vertical, longitudinal, and lateral directions corresponding to the motion of a user performing exercise of cyclically moving feet are obtained, and a first maximum value in one cycle of a foot movement in the vertical acceleration signal is obtained. Subsequently, a search is made for first and second change points related to foot landing and takeoff motions in a composite acceleration signal obtained by combining acceleration signals in at least two axis directions, in forward and backward directions of the time point of a second maximum value of the composite acceleration signal, within the cycle. Then, a time period between the first and second change points is obtained as a change point interval, and a foot landing period while exercising is calculated based on the first maximum value and the change point interval.
Abstract:
An exercise support device includes a motion sensor that is worn on a user's body and outputs data regarding the motion status of the user's body when the user is performing a moving exercise, and a control section which acquires exercise information regarding the user's exercise status. The control section selects a specific exercise index having relatively strong correlation with a moving speed from exercise indexes acquired from the data outputted when the user moves on a movement section plural times at moving speeds different from each other, acquires a coefficient that is used in an approximate expression which represents the specific exercise index and is a linear function including the moving speed as a variable and the coefficient, and acquires the exercise information based on the specific exercise index and the coefficient when the user moves by the moving exercise.
Abstract:
An image capturing apparatus includes: an imaging element; a main lens that condenses light from a subject toward the imaging element; a micro lens array that is configured by a plurality kinds of micro lenses with different focal lengths that is disposed between the imaging element and the main lens and causes light transmitted through the main lens to form an image on the imaging element; and a CPU that, in response to receiving a designation of a distance to a side of a subject that is photographed, performs weighting for each image that is imaged by the plurality kinds of micro lenses of the imaging element based on the distance so as to constitute one captured image.
Abstract:
An image capturing apparatus 1 includes: an image capturing element 41; a main lens 21 that condenses light from an object in a direction toward the image capturing element 41; and a micro-lens array 31 composed of a plurality of micro lenses being arranged between the image capturing element 41 and the main lens 21, and forming an image on the image capturing element 41 from the light having passed through the main lens 21. The micro-lens array 31 is composed of several types of micro lenses 31A, 31B and 31C with different focal distances. Distribution morphology of the micro lens 31A that is at least one type of the several types is different from distribution morphology of the other types of micro lenses 31B and 31C.