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Dither in a rolling airframe flight vehicle with a two-position actuator: An amplitude distribution approach

机译:在滚动机架式飞行车辆中,带有双位执行器:振幅分布方法

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Rolling airframe manoeuvring is a type of manoeuvre in which the missile provides continuous roll during flight. Cross-coupling between the angle of attack and sideslip in rolling airframe missiles (RAMs) yields a coning motion around the flight path. As the pitch and yaw cross-coupling effect decreases, the radius of this coning motion decreases and the accuracy of the control system increases. Two-position (on-off) actuators are used in most RAMs. The presence of a two-position actuator in a feedback system makes its characteristics non-linear. A high-frequency signal so-called dither is applied to compensate for the non-linearity effect of the actuator characteristic in the feedback system and to stabilize the coning motion. The amplitude distribution function (ADF) method in dither analysis shows that the smoothed non-linearity characteristic can be computed as the convolution of the original non-linearity and the ADF of the dither signal. According to the four-degrees-of-freedom (4-DOF) equations of RAMs in a non-rolling frame and regarding various dither signals through the ADF approach on a two-position actuator, an analytical condition for dither amplitude in coning motion stability of RAMs is derived. It was shown that the triangular signal with specified amplitude and high enough frequency led to a smoother response of two-position actuators. Finally, by applying beam-riding guidance to a RAM, the performance of dithers for decreasing the distance of the missile from the centre of the beam is validated through simulations. It is illustrated that applying the triangular dither resulted in minimal error.
机译:滚动机动机动是一种机动,导弹在飞行期间提供连续滚动。在滚动机身导弹(RAM)之间的攻击角和侧滑之间的交叉耦合产生了飞行路径周围的锥形运动。随着沥青和偏航交叉耦合效果降低,该锥体运动的半径降低,控制系统的准确性增加。在大多数RAM中使用两个位置(开关)执行器。反馈系统中的两个位置致动器的存在使其特性非线性。施加高频信号所谓的抖动以补偿反馈系统中的致动器特性的非线性效果,并稳定锥形运动。抖动分析中的幅度分布函​​数(ADF)方法表明,可以计算平滑的非线性特性作为原始非线性和抖动信号的ADF的卷积。根据非滚动框架中的RAM的四个自由度(4-DOF)方程,并且通过ADF方法在双位置致动器上的各种抖动信号,对旋转运动稳定性的抖动幅度的分析条件rams是衍生的。结果表明,具有指定幅度和足够高的频率的三角形信号导致了两个位置致动器的更平滑的响应。最后,通过对RAM施加光束引导,通过仿真验证了用于减少导弹距离的导弹距离的性能。示出了应用三角抖动导致最小误差。

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