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Target method approaching green computing for active vibration control in the strapdown inertial navigation system

机译:接近绿色计算的目标方法在泰斯特惯性导航系统中实现有源振动控制

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摘要

Currently the matrix vibration of the strapdown inertial navigation system (SINS) for some cruise missile needs to be reduced and conventional algorithms occupy excessive hardware resources. Considering the vibration frequency range from 50 to 400HZ has the biggest impact on the guidance accuracy, we propose a target method for active vibration control in the SINS. Firstly, the requirement analysis is carried out for the target method, and secondly the MATLAB software is used to design the parameters and compare the filtering simulation. Then the hardware design is performed and the filtering algorithm is improved to reduce the power consumption approaching green computing. Finally the effectiveness and cost-efficiency of the target method for active vibration control in the SINS is verified by the experiment. The results show that the target method can separate the main vibration frequency which affects the guidance accuracy with a good linearity effect, efficient hardware utilization and low power consumption approaching green computing. Moreover, the accuracy, the effectiveness and efficiency of the control algorithm have been also significantly improved.
机译:目前需要减少巡航导弹的拟巡程惯性导航系统(SINS)的矩阵振动,并且常规算法占用过多的硬件资源。考虑到50至400Hz的振动频率范围对引导准确性的影响最大,我们提出了一种用于血管主动振动控制的目标方法。首先,对目标方法执行需求分析,其次,MATLAB软件用于设计参数并比较过滤仿真。然后执行硬件设计,改进过滤算法以降低接近绿色计算的功耗。最后通过实验验证了循环中主动振动控制的目标方法的有效性和成本效率。结果表明,目标方法可以分离主要振动频率,从而利用良好的线性效果,高效的硬件利用和接近绿色计算的低功耗。此外,控制算法的准确性,效率和效率也得到了显着改善。

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