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A Method for Checking the Field of View of Automobile Ergonomics

An ergonomic and checking technology, applied in the field of automotive ergonomics vision checking, can solve the problems of increasing checking workload, complicated drawing of automobile 3D model, and increasing difficulty of manual checking, etc., and improve test accuracy. The effect of accurate and accurate determination, reduction of manual checking workload, and quick and convenient drawing process

Active Publication Date: 2019-06-11
黄莹
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] For example, the size of the front windshield of a car will affect the driver's forward vision, and the A-pillar will cause a blind spot at a certain angle in the driver's forward vision. In order to drive safely, these factors have corresponding standards and specifications; The design method is divided into two types. One is the traditional drawing method. Its basic principle is to draw the side view, front view, and rear view of the car, and then locate the position of the eye ellipse at the corresponding position in the side view of the car. Finally, use The field of view of the eye ellipse is calculated by the drawing method, but the process of this method is cumbersome, and the accuracy of manual work drawing check is low, which is prone to errors;
[0004] Another design method is to put the drawn 3D model of the car into the ergonomics verification software, and the software will automatically generate the field of view. Static calibration is performed at a certain angle, but the position and rotation angle of the exterior rearview mirror and interior rearview mirror used in practice can be adjusted, which causes a certain degree of error, and the calibration result is inaccurate; and the 3D model of the car The drawing is very complicated, and the overall model of the car is not actually needed for field of vision verification, only the modeling of the partial parts that block the field of view is required. The 3D model is simplified, which further increases the workload of verification;
[0005] The above two methods will have some deviations from the actual situation in the calculation, and it is difficult for designers to find problems in the design or verification stage, and there is no way to effectively test the verification situation; therefore, often after the completion of the car vision design work , It is also necessary for the tester to sit in the car and carry out corresponding tests. For example, whether the upper and lower boundaries of the rear windshield meet the requirements in the front view, the tester needs to sit in the car and then observe the car through the rearview mirror. Objects in the rear are judged by the testers. The follow-up manual verification process is cumbersome, and in order to keep the results correct, each step requires high precision, which further increases the difficulty of manual verification; It is easily affected by the on-site environment, such as light brightness, calibration objects and other factors, resulting in unsatisfactory results of manual calibration

Method used

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  • A Method for Checking the Field of View of Automobile Ergonomics

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Embodiment Construction

[0038] Such as Figure 1-Figure 8 The method for checking the field of view of a kind of automobile ergonomics shown includes the car to be tested, and the driver's seat in the car to be tested is provided with a fixed bracket. tight, the fixed bracket can also be formed by lapping multiple steel pipes, and the bottom of the steel pipe is directly connected with the slide rail at the bottom of the seat through bolts; Generally, a five-axis or six-axis manipulator can be used, and a four-axis manipulator can also be set on a slide rail; the upper end of the manipulator 11 is equipped with a horizontally arranged gripper 13;

[0039] The gripper 13 can rotate around the vertical axis passing through its own center point, and the outer end of the gripper 13 is provided with two parallel, horizontally placed simulated light sources 12, in order to effectively ensure that the rotation center point of the gripper 13 simulates the human body The head rotation point, the simulated li...

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Abstract

The present invention specifically relates to a method for visual field fast checking of automobile ergonomics with high calibration precision, a small subsequent manual checking workload, and accurate manual calibration. The method includes automobile parameter setting, visual field checking, and manual checking. A laser scanning device only draws model parameters related to the visual field checking, and an analysis speed is fast. The calibration system can automatically complete all the contents of the visual field checking, has high checking precision and good accuracy, and can be easily used in different types of automobiles. Test precision and accuracy of the manual checking step are high. A result of the manual checking can be directly fed back to a controller to complete correction, and the subsequent manual checking workload is small.

Description

technical field [0001] The invention relates to the field of automobile ergonomics testing, in particular to a method for checking the field of view of automobile ergonomics. Background technique [0002] Vision design in automobile ergonomics is a very important content, and it is the main factor affecting the active safety of automobiles; for this reason, it is necessary to ensure the vision requirements of car drivers, such as external signals and signs, road boundaries, passing vehicles, etc. The identification and information acquisition of road pedestrians and road pedestrians are the tasks of vehicle vision design. [0003] For example, the size of the front windshield of a car will affect the driver's forward vision, and the A-pillar will cause a blind spot at a certain angle in the driver's forward vision. In order to drive safely, these factors have corresponding standards and specifications; The design method is divided into two types. One is the traditional draw...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M17/007
CPCG01M17/007
Inventor 陈子龙赵一鸣苏联勇雷毅
Owner 黄莹
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