Abstract:
The visualization apparatus comprises: a display that enables visualization of a predetermined information by superimposing the predetermined information in a three-dimensional space; a three-dimensional sensor that detects coordinate information of objects existing in the three-dimensional space within a display range of the display; a fitting unit that sequentially acquires coordinate information of each object detected by the three-dimensional sensor, matches the coordinate information of the object with a three-dimensional model of a target object prepared in advance for each acquisition to specify the target object from among the objects, and sequentially fits the three-dimensional model to the specified target object; and a display control unit that make the display to display a back surface shape of the target object detected by the three-dimensional sensor with respect to the front in a gaze direction by superimposing and displaying a three-dimensional model corresponding to a shape viewed from the front in the gaze direction on the target object.
Abstract:
A manual measuring system (an articulated three-dimensional coordinate measuring machine or a gantry three-dimensional coordinate measuring machine) allows a measuring probe to be manually moved while enabling a user to focus on making measurements and allows the user to manually move the measuring probe in order to facilitate and accelerate measurements. The manual measuring system includes a sub-monitor (portable terminal) that is mounted near the tip of the measuring probe. It is possible to display on the sub-monitor a guided route for the measuring probe to a measurement point or to indicate on the sub-monitor that the measuring probe has entered a measurement allowable range or to allow the user to direct by means of the sub-monitor to obtain a measurement value by the measuring probe.
Abstract:
A three-dimensional shape measurement system includes a three-dimensional shape measuring machine that outputs spatial coordinate data on a probe for measuring a work, and a control PC that processes the spatial coordinate data. The three-dimensional shape measurement machine includes a plurality of articulated-armed three-dimensional shape measuring machines that are arranged so that measurement ranges of the probes overlap each other to allow measurement of part or all of the work, and configured such that each can output spatial coordinate data. The control PC includes a coordinate data pool that retains the spatial coordinate data in an identifiable manner with respect to each of the three-dimensional shape measuring machines, and a synthesis unit that synthesizes the spatial coordinate data retained in the coordinate data pool.
Abstract:
The present invention provides a measurement program selection assisting apparatus capable of visually confirming whether a selected measurement program is suitable for an object to be measured. One aspect of the present invention is a measurement program selection assisting apparatus comprising: a measurement program database storing a measurement program related to measurement of an object and superimposed display information corresponding to a three-dimensional shape of the object in association with each other; a display unit capable of displaying information defined in a virtual space superimposed on the real space; and a display control unit for acquiring the superimposed display information corresponding to a selected measurement program from the measurement program database and displaying the acquired superimposed display information in a mixed reality on the display unit.
Abstract:
The visualization apparatus comprises: a display that enables visualization of a predetermined information by superimposing the predetermined information in a three-dimensional space; a three-dimensional sensor that detects coordinate information of objects existing in the three-dimensional space within a display range of the display; a fitting unit that sequentially acquires coordinate information of each object detected by the three-dimensional sensor, matches the coordinate information of the object with a three-dimensional model of a target object prepared in advance for each acquisition to specify the target object from among the objects, and sequentially fits the three-dimensional model to the specified target object; and a display control unit that make the display to display a back surface shape of the target object detected by the three-dimensional sensor with respect to the front in a gaze direction by superimposing and displaying a three-dimensional model corresponding to a shape viewed from the front in the gaze direction on the target object.
Abstract:
Provided are an offline teaching device and a measurement control device. The offline teaching device detects a shape of a measured object by a three-dimensional sensor unit, generates measurement procedure information in which measurement items are respectively associated with measurement points sequentially specified to the detected shape, and causes a measurement procedure information storage unit to store the measurement procedure information associated. The measurement control device detects a shape of a target measured object by a three-dimensional sensor unit, searches the measurement procedure information storage unit for a measured object having a shape substantially identical to a detected shape and specifies a measured object, extracts measurement procedure information on the specified measured object as measurement procedure information on the target measured object, and causes the use measuring device to measure the target measured object on the basis of the measurement procedure information extracted.
Abstract:
A measurement data collection device includes a head-mounted display unit and a control unit to control the head-mounted display unit, and the measurement data collection device collects a measurement value measured by a measurement tool handled by the user. The head-mounted display unit includes a frame wearable on the head of the user, a display screen of transmissive type to display a three-dimensional image by superimposing the three-dimensional image on a real space, and a camera supported by the frame. Additionally, the control unit includes, a support information generation unit to generate a guide frame as support information, the guide frame being displayed in a reading position, a display control unit to control the support information generated by the support information generation unit, and a measurement value reading unit to read a measurement value by analyzing an image of the measurement tool captured by the camera.
Abstract:
A remote controllable measuring system includes a remote controllable measuring apparatus having a communication terminal having instant messaging; an input/output for exchanging signals with the communication terminal; a measurer (measuring apparatus main body); and a controller (computation apparatus) causing the measurer to operate according to an instruction from the communication terminal. The remote controllable measuring system also includes a mobile terminal capable of transmitting and receiving signals with the communication terminal.
Abstract:
A manual measuring system (an articulated three-dimensional coordinate measuring machine or a gantry three-dimensional coordinate measuring machine) allows a measuring probe to be manually moved while enabling a user to focus on making measurements and allows the user to manually move the measuring probe in order to facilitate and accelerate measurements. The manual measuring system includes a sub-monitor (portable terminal) that is mounted near the tip of the measuring probe. It is possible to display on the sub-monitor a guided route for the measuring probe to a measurement point or to indicate on the sub-monitor that the measuring probe has entered a measurement allowable range or to allow the user to direct by means of the sub-monitor to obtain a measurement value by the measuring probe.
Abstract:
A multi-axis type three-dimensional measuring apparatus includes a multi-axis arm mechanism, a probe formed in a distal end of the multi-axis arm mechanism and configured to measure a workpiece, and a projector formed in the distal end of the multi-axis arm mechanism and configured to scale a range of a projected projection image according to a distance between the workpiece and the probe. The projector is configured to project full-scale projection graphics of said workpiece so as to match the full-scale projection graphics with the workpiece regardless of a difference in a distance between the workpiece and the probe, and to project display information identifying a measurement schedule position by the probe.