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FPGA-based multipoint shock wave measurement system using LDVs for aerospace applications

机译:使用LDV的基于FPGA的多点冲击波测量系统用于航空航天应用

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Pyrotechnic devices are widely used in aerospace industry for variety of applications in launch vehicles, payload designs and spacecraft architectures. These devices are used to release, activate and separate structural subsystems. Ignition of these explosive carriers generates high intensity shock waves having immense drawback of cause damage to the sensitive electronic equipment due to its high frequency. Numerous experimental simulation techniques have been developed to study and characterize the behavior of pyroshock on the host structure. In this study, Field Programmable Gate Array (FPGA) based shock wave measurement system was developed using multiple Laser Doppler Vibrometers (LDVs). These LDVs simultaneously capture the shock wave at different locations generated due to explosive based pyrotechnical event. An indigenously developed Graphical User Interface (GUI) was used to visualize the voltage and acceleration plots for each channel. This paper describes the system design, integration and implementation of data acquisition system for multipoint sensing on Xilinx Virtex-6 FPGA based development hardware. Experimental setup was configured to test the reliability of the system. Mechanical shock wave was generated on the aluminum plate using a gun firing 6-mm plastic bullets. The shock wave was captured using three LDVs at various points connected to multichannel data acquisition hardware. This test was used to mimic the pyroshock wave and justify the potential of our system for real pyroshock measurement. Pyroshock generation is dangerous and expensive trial having low chances of repeating the experiment. Therefore, this technology has the advantage of measuring remotely shock response on various locations at the same time.
机译:烟火装置广泛用于航空航天工业中,用于运载火箭,有效载荷设计和航天器结构中的各种应用。这些设备用于释放,激活和分离结构子系统。点燃这些爆炸性载体会产生高强度的冲击波,其冲击波具有很高的缺点,由于其频率高,会损坏敏感的电子设备。已经开发出许多实验模拟技术来研究和表征热震在主体结构上的行为。在这项研究中,使用多个激光多普勒测振仪(LDV)开发了基于现场可编程门阵列(FPGA)的冲击波测量系统。这些LDV同时捕获由于爆炸性烟火事件而在不同位置产生的冲击波。本地开发的图形用户界面(GUI)用于可视化每个通道的电压和加速度图。本文介绍了基于Xilinx Virtex-6 FPGA的开发硬件上用于多点传感的数据采集系统的系统设计,集成和实现。实验设置被配置为测试系统的可靠性。使用发射6毫米塑料子弹的枪在铝板上产生机械冲击波。在连接到多通道数据采集硬件的各个点上使用三个LDV捕获了冲击波。该测试用于模拟热震波,并证明我们系统用于实际热震测量的潜力。产生热震颤是危险且昂贵的尝试,重复实验的机会很小。因此,该技术的优点是可以同时测量各个位置的远程震动响应。

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