Autonomous Vehicle Test Interface for Road-Run Sensor Diagnostics
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Solution Overview
Problem
The existing road running tests for autonomous vehicles require a large number of professional testers, leading to low testing efficiency and high labor costs due to the manual and sequential checking of underlying codes.
Innovation Solution
A method and apparatus that generate and display a test interface using detection information from various sensors (laser, image capturing, radar, and state sensing apparatuses) to visually present test results, including vehicle environment, monitoring warnings, debugging problems, and path information, thereby reducing the need for multiple testers and improving efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If multiple professional testers manually check underlying code and test devices sequentially, then comprehensive testing coverage is achieved, but testing efficiency is low and labor cost is high
Solution Approach 1:
The autonomous vehicle performs self-testing through its own detecting apparatus (laser detectors, image capturing apparatus, radar sensing apparatus). The vehicle's systems automatically detect and report their own operational status, eliminating the need for manual code checking and device testing by multiple testers.
Solution Approach 2:
Manual mechanical testing processes are replaced with automated electronic detection systems. The detecting apparatus in the autonomous vehicle automatically collects data and generates test interfaces, substituting the mechanical process of human testers manually examining code and devices.
2Reliability
If multiple professional testers are required for sequential checking, then thorough testing is achieved, but labor cost increases
Solution Approach 1:
The autonomous vehicle's detecting apparatus performs self-diagnosis and self-testing functions. Each detecting apparatus (laser detector, image capturing apparatus, radar sensing apparatus) automatically monitors its own status and reports to the test interface generation module, eliminating the need for multiple human testers.
Solution Approach 2:
The test interface generation module serves multiple functions: it collects data from all detecting apparatus, processes test results, generates comprehensive test interfaces, and displays results. This single multi-functional module replaces the work of multiple specialized testers.
3Measurement precision
If manual testing processes are used, then detailed inspection is possible, but time consumption increases
Solution Approach 1:
The detecting apparatus continuously collects detection information and the test interface generation module continuously processes and displays test results throughout the vehicle's operation. This continuous automated process eliminates the intermittent nature of manual testing, providing ongoing monitoring without time loss.
Solution Approach 2:
Manual inspection processes are replaced with automated electronic detection and data processing systems. The detecting apparatus automatically captures detailed information about the vehicle's operation and environment, and the system instantly processes this data, eliminating the time required for manual analysis while maintaining or improving inspection detail.
Data Source
AI summary
The application provides a method and an apparatus for testing an autonomous vehicle, and a storage medium, where the method includes: obtaining detection information of the autonomous vehicle, where the detection information is configured to indicate the test result obtained when the detecting apparatus in the autonomous vehicle tests the autonomous vehicle; further, generating a test interface according to the obtained detection information, and displaying the test interface, so that the tester can visually check various test information of the autonomous vehicle during the road running test, thereby not only saving a labor cost, but also improving a test efficiency of the road running test.


