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Four-axis gimbal system application based on gimbal self-adaptation adjustment

机译:基于云台自适应调整的四轴云台系统应用

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Gimbal lock is a common physical phenomenon in the gimbal system. As for the three-axis gimbal system, gimbal lock could not be avoided when two axes are driven into being collinear with each other. As a result, it will lead to the loss of one degree of rotational freedom. This paper analyses the limitation of three-axis gimbal system in flight attitude motion simulation and introduces a new system of four-axis gimbal set, which contains a redundant forth axis. And then, a kind of gimbal angle algorithm based on base gimbal self-adaptation adjustment was presented to successfully solve the running angles of the four gimbals. According to theoretical analysis and MATLAB simulation result, this application scheme could drive four-axis gimbal system to simulate wide attitude motion of the flight vehicle rather than suffering singularity.
机译:万向节锁定是万向节系统中常见的物理现象。对于三轴万向架系统,当两个轴被驱动成共线时,无法避免万向架锁定。结果,将导致旋转自由度的损失。本文分析了三轴云台系统在飞行姿态运动仿真中的局限性,并提出了一种新的四轴云台系统,该系统包含一个多余的第四轴。然后,提出了一种基于基础万向节自适应调整的万向节角度算法,成功求解了四个万向节的运行角度。根据理论分析和MATLAB仿真结果,该应用方案可以驱动四轴万向节系统来模拟飞行器的宽姿态运动而不会出现奇点。

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