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基于声矢量水听器阵列误差的自校正算法 被引量:1
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作者 王鹏 王红云 +1 位作者 郭亚强 白艳萍 《数学的实践与认识》 北大核心 2017年第6期136-143,共8页
对声矢量水听器阵列的各类误差进行了分类,推导了各类误差对阵列信号模型的影响因子,通过Monte Carlo实验分析对比了各类误差对阵列DOA估计性能的影响,然后将方向性误差和位置误差归结为幅度误差和相位误差,在传统声压阵列误差校正模型... 对声矢量水听器阵列的各类误差进行了分类,推导了各类误差对阵列信号模型的影响因子,通过Monte Carlo实验分析对比了各类误差对阵列DOA估计性能的影响,然后将方向性误差和位置误差归结为幅度误差和相位误差,在传统声压阵列误差校正模型和算法的基础上,得到矢量阵列误差自校正的优化模型及自校正算法,最后,通过仿真实验和外场实验的数据处理表明,自校正算法具有良好的参数估计性能,具有一定的工程实用性. 展开更多
关键词 声矢量水听器阵列 幅相误差 误差自校正 波达方向
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Underwater patch near-field acoustical holography based on particle velocity and vector hydrophone array
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作者 HU Bo YANG DeSen +3 位作者 LI SiChun SUN Yu MO ShiQi SHI ShengGuo 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第11期2010-2017,共8页
One-step patch near-field acoustical holography(PNAH) is a powerful tool for identifying noise sources from the partially known sound pressure field.The acoustical property to be reconstructed on the surface of intere... One-step patch near-field acoustical holography(PNAH) is a powerful tool for identifying noise sources from the partially known sound pressure field.The acoustical property to be reconstructed on the surface of interest is related to the partially measured pressure on the hologram surface in terms of sampling and bandlimiting matrices,which cost more in computation.A one-step procedure based on measuring of the normal component of the particle velocity is described,including the mathematical formulation.The numerical simulation shows that one-step PNAH based on particle velocity can obtain more accurately reconstructed results and it is also less sensitive to noise than the method based on pressure.These findings are confirmed by an underwater near-field acoustical holography experiment conducted with a vector hydrophone array.The experimental results have illustrated the high performance of one-step PNAH based on particle velocity in the reconstruction of sound field and the advantages of a vector hydrophone array in an underwater near-field measurement. 展开更多
关键词 near-field acoustical holography PATCH particle velocity vector hydrophone array
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