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首页> 外文期刊>International journal of aerospace engineering >A Novel Self-Tuning Fuzzy Logic-Based PID Controllers for Two-Axis Gimbal Stabilization in a Missile Seeker
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A Novel Self-Tuning Fuzzy Logic-Based PID Controllers for Two-Axis Gimbal Stabilization in a Missile Seeker

机译:基于新型的基于自调整模糊逻辑的PID控制器,用于导弹导弹件中的双轴万向节稳定

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Tracking a target is an essential function of a seeker for missiles. The target tracking mechanism of a seeker consists of gimbals, mounted with gyroscopes, and an antenna or some other energy receiving devices such as radar, infrared (IR), or laser. Stabilization of such a gimbal is necessary for any guided missile to maintain the tracking device always pointing towards the target. For the stabilization of the gimbal system, several control methods have been employed for making the gimbal to follow an input rate command by eliminating all the gimbal disturbances. Here, a new self-tuning fuzzy logic-based proportional, integral, derivative (PID) controller is introduced for the stabilization of a two-axis gimbal for a manoeuvring guided missile. The proposed control method involves tuning the gains of the PID controller based on the fuzzy logic rule bases considering the missile body rotation. The performance of the stabilization loops has been verified through MATLAB simulations for fuzzy logic-based PID controller compared with the conventional PID controller. The simulation results show the response of the gimbal system with stabilization loops met the control requirements with fuzzy PID controllers but not with conventional PID controllers.
机译:跟踪目标是导弹的寻求者的基本功能。搜索器的目标跟踪机构由万向节组成,安装有陀螺仪,以及天线或其他其他能量接收装置,例如雷达,红外(IR)或激光。任何引导导弹都需要保持这种万向节的稳定化,以保持跟踪装置总是指向目标。为了稳定Gimbal系统,已经采用了几种控制方法来使万向节用于通过消除所有万向节扰动来遵循输入率命令。这里,引入了一种新的自调整模糊逻辑的比例,积分的衍生(PID)控制器,用于稳定用于操纵引导导弹的双轴万向节。所提出的控制方法涉及基于考虑导弹体旋转的模糊逻辑规则基础调整PID控制器的增益。与传统PID控制器相比,通过Matlab模拟验证了稳定环路的性能,用于模糊逻辑的PID控制器。仿真结果表明,Gimbal系统具有稳定循环的响应符合模糊PID控制器的控制要求,但不具有传统的PID控制器。

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