Mathematical description of a hybrid quadrocopter for the purpose of computer simulation of controlled motion

V. B. Uspenskyi, M. Nekrasova
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Abstract

The problem of constructing the most complete mathematical model of the movement of a hybrid-type quadcopter, which, in addition to electric motors, is also equipped with an internal combustion engine, is considered. The relevance of this development is due to the desire to create a control system for a quadcopter of relatively new design, and the feasibility of development is due to the desire to use integrated design, improving the design of the device and elements of navigation and control. The developed mathematical model of the motion of the center of mass of the quadcopter and around the center of mass includes control variables and takes into account the gyroscopic moments from the rotors of the engines - carriers of kinetic moments. This model can be used in the process of designing and debugging control algorithms for such aircraft. The main method of modeling is the numerical integration of the system of differential equations. The given modeling complex will allow to carry out researches on influence of perturbing factors and imperfection of elements of a control system; test and improve management laws; to modernize the design of the quadcopter to increase the efficiency of operation. The advantage of the model is its validity, openness, versatility, as it is easy to adapt to any other design of the quadcopter.
混合四旋翼机控制运动计算机仿真的数学描述
考虑了一种除电动机外还装有内燃机的混合四轴飞行器运动的最完整数学模型的建立问题。这种发展的相关性是由于希望为四轴飞行器创建一个相对较新的设计控制系统,而开发的可行性是由于希望使用集成设计,改进导航和控制的设备和元素的设计。所建立的四轴飞行器质心运动和绕质心运动的数学模型包括控制变量,并考虑了发动机转子的陀螺力矩——动力力矩的载体。该模型可用于此类飞机控制算法的设计和调试。建模的主要方法是微分方程组的数值积分。给定的建模复合体将允许对控制系统中扰动因素的影响和元件的不完全性进行研究;检验和完善管理法规;使四轴飞行器的设计现代化,以提高操作效率。该模型的优点是它的有效性,开放性,通用性,因为它很容易适应任何其他四轴飞行器的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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