Flight Data Templates for Repeatable Aerial Task Execution
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Users face time and effort consumption when repeating flight tasks or shooting images at the same position with aerial vehicles, as they need to manually recall and implement corresponding actions or determine shooting positions based on previous images.
Innovation Solution
A method and system that allows loading recorded flight data to reproduce flight tasks by searching and processing corresponding data in a preset flight database, generating user prompts, and controlling aerial vehicles to perform specific tasks, including the use of three-dimensional flight route images and user interfaces for editing and sharing flight templates.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If users manually recall and implement flight actions or determine shooting positions based on memory and shot images, then they can complete flight tasks, but it consumes time and effort
Solution Approach 1:
The system automatically records flight parameters (position, attitude, speed, image acquisition settings) during the initial flight task execution. This preliminary recording of flight data eliminates the need for manual recall and implementation when repeating the same flight actions, directly resolving the time and effort consumption issue.
Solution Approach 2:
The system creates a digital copy of the flight task through recorded flight parameters and generates a flight template that can be reused. This copying mechanism allows users to reproduce flight tasks by loading the template rather than manually recreating the same actions, significantly improving efficiency and reducing time loss.
2Ease of operation
If users determine shooting positions and directions based on shot images, then they can capture images at desired positions, but the process is time-consuming
Solution Approach 1:
The system copies the exact shooting position and direction information from the original flight task's recorded flight parameters. When reproducing the flight task, the aerial vehicle automatically navigates to the same shooting positions and orientations without requiring users to manually analyze shot images, making the process both easier and faster.
Solution Approach 2:
The flight template acts as an intermediary that stores and transmits shooting position and direction information. Instead of users directly interpreting shot images to determine positions, the system uses the flight template as a mediator to automatically provide the precise positioning information needed for image capture.
3Productivity
If the system loads and processes flight data to control aerial vehicles, then flight tasks can be reproduced efficiently, but it requires a preset flight database and data processing mechanisms
Solution Approach 1:
The flight database and data processing system serve multiple functions: recording flight parameters during task execution, storing flight templates for future reuse, processing and managing flight data, and controlling aerial vehicle reproduction of tasks. This multi-functionality justifies the system complexity by consolidating multiple necessary functions into a unified infrastructure that enables efficient flight task reproduction.
Data Source
AI summary
A method, a device and a system for processing a flight task are provided. The method comprises receiving a loading request for flight data, searching for corresponding flight data according to the loading request, processing located flight data in response to the loading request, and loading the located flight data to control a corresponding aerial vehicle to perform a corresponding flight task.


