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A Method and Device for Inertial Motion Capture Deformation and Distortion Correction Based on Large Space

A motion capture and distortion correction technology, applied in the field of virtual reality, can solve the problems of magnetometer offset, inability to use in large spaces, virtual character movement deformation and limb distortion, etc., to avoid deformation and distortion.

Active Publication Date: 2020-12-25
红栗子虚拟现实(北京)科技有限公司
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The underlying hardware used in the existing inertial motion capture technology is the gyroscope, which is used to bind the human skeleton, and then obtain the rotation value of each main bone, thereby simulating the overall movement of the human body; but the gyroscope itself has The disadvantage is that there will be inertial drift, and the drift will increase with the use of time. Although it can be calibrated by the magnetometer in the gyroscope, the magnetic field will change in a large space, and the calibration of the magnetometer will be offset. , especially the farther away from the initial position, the greater the deviation, especially in the environment with many metal or electronic devices, the spatial magnetic field fluctuates greatly under the influence of it, so that serious deviation will occur only if it is far away from the initial position, so the existing The inertial motion capture is limited to use in a small space and an environment with a stable magnetic field, and cannot be used in a large space
[0003] Inertial motion capture products in the domestic and foreign markets are only suitable for use in a small space. Once they are used in a larger space, the gyroscope will drift and distort at a certain distance from the initial position, resulting in the associated virtual character. Movement deformation and limb distortion appear, such as figure 1 As shown: the left and right arms of the tester are extended flat, and the left arm of the corresponding virtual character is severely twisted and folded. Therefore, the existing technology has defects and needs to be improved

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  • A Method and Device for Inertial Motion Capture Deformation and Distortion Correction Based on Large Space

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Embodiment Construction

[0021] The present invention will be described in detail below in conjunction with specific embodiments.

[0022] The present invention is based on a large space inertial motion capture deformation and distortion correction device, including:

[0023] Mesh division unit: used to divide a large space (generally a space above 200 square meters) into a uniform grid in the horizontal plane;

[0024] Data acquisition equipment: including a nine-axis gyroscope, which is held by the calibration personnel and kept in a fixed direction. The calibration personnel move to the position of each grid node to collect the magnetic field data of the grid nodes; or use a clamping device to clamp the data acquisition equipment Finally, keep a fixed direction, and move to the position of each grid node driven by an automatic shifting device (robot, drone, etc.), and collect the magnetic field data of the grid node;

[0025] Data processing unit: connected to the data acquisition device, and tran...

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Abstract

The invention discloses a method and a device for correcting inertial motion capture deformation and distortion based on a large space. The device comprises a grid division unit, data collection equipment, a space positioning module, a data processing unit and a data correction server, wherein the data processing unit is connected to the data collection equipment, and is used for transmitting magnetic field data of grid nodes to the data correction server in a threading manner; the space positioning module is used for recording positioning information of the grid nodes; a magnetic field data storage module is used for recording magnetometer data inside a gyroscope at the position of each grid node; the data correction server is used for receiving data of the data processing unit and correcting the data of the gyroscope at each spatial position into spatial actual data and then transmitting the spatial actual data to a virtual character for matching. After the device and the method areadopted for correction, the body form in the large space becomes normal, the body form can remain unchanged accurately with arm actions of a tester, and the disadvantages of deformation and distortionare avoided.

Description

technical field [0001] The present invention relates to virtual reality technology, in particular to a large space-based inertial motion capture deformation and distortion correction method and device. Background technique [0002] The underlying hardware used in the existing inertial motion capture technology is the gyroscope, which is used to bind the human skeleton, and then obtain the rotation value of each main bone, thereby simulating the overall movement of the human body; but the gyroscope itself has The disadvantage is that there will be inertial drift, and the drift will increase as the time of use increases. Although it can be calibrated by the magnetometer in the gyroscope, the magnetic field will change in a large space, and the calibration of the magnetometer will be offset. , especially the farther away from the initial position, the greater the deviation, especially in the environment with many metal or electronic devices, the spatial magnetic field fluctuate...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01C25/00G01C21/16G01C21/08A63F13/822A63F13/211
Inventor 赵轩孙鹏
Owner 红栗子虚拟现实(北京)科技有限公司
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