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Pyroshock Acceleration Field Reconstruction in Temporal and Spectral Domains Based on Laser Shock Scanning and Iterative Decomposition and Synthesis Considering Stop Band Effects

机译:基于激光冲击扫描和迭代分解和综合考虑停止频段效应的滤波器加速场重建

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摘要

Pyrotechnic devices are used to separate substructures from main structures. Pyroshock can cause failure in electronic components that are sensitive to high frequency shock. Most of the existing methods to analyze pyroshock have limitations for high frequency simulations and are only available for simulation of point explosive-induced pyroshock. To solve the problem of existing methods, we developed a laser shock-based pyroshock reconstruction algorithm covering high frequency range that can predict linear explosive-induced pyroshock, as well as point explosive-induced ones. The developed algorithm reconstructs pyroshock from laser shock test in both temporal and spectral domains using an iterative signal decomposition and synthesis method. In the signal decomposition and synthesis process, unremoved signals in the stopbands occurred and were compensated by iteration to improve the results. At the end of this paper, various types of pyroshock were processed through the proposed method. Pyroshock wave propagation images and shock response spectrum images were presented as a result. To verify the algorithm, we compared the obtained result with a real pyroshock. The time domain signal was reconstructed with an averaged peak to peak acceleration difference of 20.21%, and the shock response spectrum was reconstructed with an average mean acceleration difference of 25.86%.
机译:烟火设备用于将来自主结构的子结构分开。胶乳锁可导致对高频冲击敏感的电子元件失效。分析吡孔锁的大多数现有方法对高频模拟具有局限性,并且仅适用于点爆炸诱导的吡磺的仿真。为了解决现有方法的问题,我们开发了一种激光冲击基焦扑重建算法,涵盖了能够预测线性爆炸诱导的吡磺粥的高频范围,以及点爆炸引起的焦点。使用迭代信号分解和合成方法,开发算法从两个时间和光谱域中的激光冲击试验重建焦点ock。在信号分解和合成过程中,发生了停止带中的未引用信号,并通过迭代来补偿以改善结果。在本文末尾,通过所提出的方法处理各种类型的粘液锁。结果呈现了滤波波传播图像和冲击响应频谱图像。为了验证算法,我们将所获得的结果与真正的吡孔进行比较。将平均峰值重建为20.21%的平均峰值的时域信号,并重建冲击响应谱,平均平均加速度为25.86%。

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