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Nonlinear Harmonic Distortion of Complementary Golay Codes

机译:互补Golay码的非线性谐波失真

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摘要

Recent advances in electronics miniaturization have led to the development of low-power, low-cost, point-of-care ultrasound scanners. Low-cost systems employing simple bi-level pulse generation devices need only utilize binary phase modulated coded excitations to significantly improve sensitivity; however the performance of complementary codes in the presence of nonlinear harmonic distortion has not been thoroughly investigated. Through simulation, it was found that nonlinear propagation media with little attenuative properties can significantly deteriorate the Peak Sidelobe Level (PSL) performance of complementary Golay coded pulse compression, resulting in PSL levels of -62 dB using nonlinear acoustics theory contrasted with -198 dB in the linear case. Simulations of 96 complementary pairs revealed that some pairs are more robust to sidelobe degradation from nonlinear harmonic distortion than others, up to a maximum PSL difference of 17 dB between the best and worst performing codes. It is recommended that users consider the effects of nonlinear harmonic distortion when implementing binary phase modulated complementary Golay coded excitations.
机译:电子产品小型化的最新进展导致了低功耗的发展,低成本、医疗点超声波扫描仪。低成本系统采用简单的双层的脉冲一代设备只需要利用二进制相位调制编码激励显著提高灵敏度;互补码在非线性的存在谐波失真并不彻底调查。非线性传播媒体很少attenuative属性可以显著恶化的峰值旁瓣电平(PSL)戈利互补编码脉冲的性能压缩,导致PSL水平的-62分贝利用非线性声学理论对比在线性情况下-198分贝。互补双显示,一些对更健壮的旁瓣退化比其他的非线性谐波失真,最大PSL 17 dB之间的差异最好和最差代码。建议用户考虑的影响当实现非线性谐波失真二进制相位调制互补戈利编码

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