Title :
Systematization of flight instruction and control for autonomous helicopter
Author :
Matsuzawa, Yuto ; Tozaki, Yuta ; Kameda, Yuji ; Nitta, Masuhiro ; Kato, Kiyotaka
Author_Institution :
Dept. of Electr. Eng., Tokyo Univ. of Sci., Tokyo, Japan
Abstract :
A radio-controlled (RC) helicopter can be used in the fields of aerial crop dusting, aerial photography, and many more. However, controlling a RC helicopter needs advanced techniques. Therefore, a flight instruction system that provides guidance on how to fly a RC helicopter is required. Examples that give flight instructions to an autonomous helicopter have been reported, but those had been designed and developed individually. To extend the application of an autonomous helicopter to an indoor environment, such as a factory, the systematization and standardization of flight instructions are required. From this, each flight instruction generative system that has been prepared for individual use can generate common flight instructions. Likewise, an autonomous helicopter can operate based on the common flight instructions designed for various purposes. In this paper, we have defined flight instruction codes based on the Numerical Control (NC) code system that has been used for a machine tool. In addition, we have systematized instruction codes. To verify such a system, an autonomous flight control system has been developed for indoor use and a flight experiment has been performed. As a result, we were able to confirm that the helicopter flew by executing the flight instructions that have been read.
Keywords :
aircraft control; autonomous aerial vehicles; helicopters; machine tools; numerical control; radiocommunication; RC helicopter; aerial crop dusting; aerial photography; autonomous flight control system; autonomous helicopter; autonomous helicopter control; flight instruction codes; flight instruction generative system; flight instruction standardization; flight instruction systematization; indoor environment; machine tool; numerical control code system; radio-controlled helicopter; Acoustics; Helicopters; Position measurement; Radio transmitters; Receivers; Synchronization; Ultrasonic variables measurement; G code; autonomous flight control system; measuring device; ultrasonic wave;
Conference_Titel :
Control, Automation and Systems (ICCAS), 2012 12th International Conference on
Conference_Location :
JeJu Island
Print_ISBN :
978-1-4673-2247-8