1 / 2

samli agriculture drone

SAMLIu2019s founder has been dedicated to UAV Agricultural Sprayer drones since year 2012. Passion is a key to success. Great passion will lead you through tough times. We combine a deep knowledge of agriculture, a history of understanding farmersu2019 needs, and a realistic approach to drone technology. With our drones and our support, farmers have been able to apply water/fungicide/pesticide/herbicide/fertilizer to their entire corn crop.

sisi4
Download Presentation

samli agriculture drone

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. How can I make a hybrid drone? It takes a combination of mechanical, electrical, and software skills to build a hybrid drone. Designing, putting together, and programming the drone to perform as intended is a challenging project. An outline of the steps involved is provided below: 1. Conceptualization and Needs Gathering: To begin, decide exactly what you want your hybrid drone to be used for. Take into account things like flight range, endurance, speed, and cargo capacity. Examine current hybrid drone designs and technologies to find viable remedies.

  2. 2. Component selection and mechanical design: Select a frame that is appropriate for holding the fixed-wing and quadcopter parts. Choose batteries, electronic speed controllers (ESCs), propellers, motors, and other electronic parts based on how well your drone performs. 3. Design and Integration of Wings: Create or choose wings that will give fixed-wing flying enough lift and stability. Take into account the drone structure's wingspan, airfoil form, and wing positioning. Make sure the quadcopter's wings can be folded or retracted for small storage and effective operation. 4. Integration of Flight Controller and Software: Put in place a flight controller that is capable of managing fixed-wing and quadcopter flying modes. Create or alter flight control software to regulate the drone's navigation, stability, and control while allowing for a smooth transition between modes. 5. Testing and Improvement: To assess the drone's performance, stability, and safety, carry out extensive testing in a controlled setting. Collect data, evaluate findings, and modify the software, hardware, or design as needed. 6. Sharing and Documentation: Keep records of the software development, testing, component selection, and design processes. In order to further the development of hybrid drone technology, share your knowledge and discoveries with the drone community. Originally published by SAMLI DRONES https://samliglobal.en.alibaba.com/

More Related