基于应变阵列的小型表面冲击定位系统设计
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中北大学 电子测试技术国家重点实验室

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TP277

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Surface Impact Positioning Technology based on intelligent armor
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    摘要:

    针对装甲单位对自身外部的观察手段有限,在深入步兵集群内部或陷入遭遇战时通常会有自检手段少,自身健康信息不足等问题,使用特殊内嵌式结构将应变片布置在装甲板内部,以HDOP值作为判断依据设计了应变阵列布置方式,依靠高性能的STM32H743MCU设计了小型系统,通过通道时差补偿、信号时延估计与TDOA定位算法,实现了装甲板表面冲击定位;实测结果表明:对40KHz的正弦波信号五通道采样,使用所设计算法进行补偿后,通道一和通道五的时间同步精度可达97%,时延估计精度在98%左右;装甲表面定位误差小于1cm,能够满足装甲表面冲击定位需求。

    Abstract:

    In view of the limited observation means of the armored units on their own exterior, the lack of self inspection means and insufficient health information when they go deep into the infantry cluster or get into the encounter war, a special embedded structure is used to arrange strain gauge inside the armor plate, and the strain array layout is designed based on the HDOP value as the judgment basis. A small system is designed by relying on the high-performance STM32H743MCU, which uses channel time difference compensation Signal delay estimation and TDOA localization algorithm have achieved impact localization on the surface of armor plates; The actual measurement results show that after sampling five channels of a 40KHz sine wave signal and compensating with the designed algorithm, the time synchronization accuracy of channel one and channel five can reach 97%; The accuracy of time delay estimation is around 98%; The positioning error of the armor surface is less than 1cm, which can meet the impact positioning requirements of the armor surface..

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文聪楠,王晓燕,薛英娟,张晓明.基于应变阵列的小型表面冲击定位系统设计计算机测量与控制[J].,2023,31(8).

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  • 收稿日期:2023-04-19
  • 最后修改日期:2023-04-24
  • 录用日期:2023-04-25
  • 在线发布日期: 2023-08-22
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