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Sparse Orthogonal Diverging Wave Imaging on a High-Frequency Phased Array

机译:高频相控阵上的稀疏正交发散波成像

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A new ultrafast encoding scheme for phased array imaging named sparse orthogonal diverging wave imaging (SODWI) is presented. Hadamard codes that encode the array elements are surfed on top of a diverging wave generated from the full aperture during transmit. A complete set of orthogonal Hadamard codes is equivalent to the number of elements on the imaging array. From within the full set of codes, a subset can be sparsely selected to increase frame rate and the tradeoff between frame rate and image quality has been investigated. The technique was implemented on a 64-channel custom beamforming platform with a 40 MHz phased array. When a complete set of 64 codes were used, SODWI exhibits a 3-dB improvement in SNR over traditional focused imaging. Each time the number of transmit codes is halved, the SODWI SNR is reduced by an average of 3-dB and the level of secondary lobes are suppressed by an average of 3.5-dB less. The FWHM of the directivity functions are increased to 136θ, 160θ, and 140θ, from 136θ, 56θ, and 30θwhen 64, 32, and 16 Hadamard codes are used without diverging waves. For 8 and 4 Hadamard codes, the signal energy spans 120θ when surfed on a diverging source, whereas the pressure from a plane wave source drops to less than 10% before spanning 40θ in both cases.
机译:提出了一种新的用于相控阵成像的超快速编码方案,称为稀疏正交发散波成像(SODWI)。在传输过程中,从整个孔径产生的发散波上会浏览对阵列元素进行编码的Hadamard码。正交Hadamard码的完整集合等效于成像阵列上的元素数量。从整个代码集中,可以稀疏选择一个子集以提高帧速率,并且已经研究了帧速率和图像质量之间的折衷。该技术是在具有40 MHz相控阵的64通道定制波束形成平台上实现的。当使用完整的64个代码集时,SODWI的SNR比传统聚焦成像提高了3 dB。每次将发射代码的数量减半时,SODWI SNR平均降低3-dB,而副瓣电平则平均降低3.5-dB。方向性函数的FWHM增加到136 θ ,160 θ 和140 θ ,始于136 θ ,56 θ 和30 θ 当使用64、32和16 Hadamard码而不发散波时。对于8和4个Hadamard码,当在发散源上冲浪时,信号能量跨度为120θ,而来自平面波源的压力在跨度为40之前下降至小于10% θ 在这两种情况下。

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