首页> 外文期刊>IEEE Journal of Oceanic Engineering >Design of Optimal Multiple Phase-Coded Signals for Broadband Acoustical Doppler Current Profiler
【24h】

Design of Optimal Multiple Phase-Coded Signals for Broadband Acoustical Doppler Current Profiler

机译:宽带声多普勒电流分析仪的最佳多相编码信号设计

获取原文
获取原文并翻译 | 示例
           

摘要

Traditional broadband acoustical Doppler current profilers utilize binary phase-coded signals (BPCSs), like Barker code or -sequence, as their transmitted signals. However, these BPCSs may not be optimal in terms of measurement deviation of current velocity. By analyzing the properties of broadband transmitted signals that influence the measurement deviation, this paper gives a mathematical explanation that the measurement deviation is essentially determined by the integral of the square of the single baseband pulse's autocorrelation function (SBPAF), namely the energy of SBPAF, when the duration and energy of the single transmitted pulse are fixed. To minimize the measurement deviation, a multiple phase-coded signal (MPCS) is adopted and the design method to obtain the optimized MPCS is proposed, which takes the energy of SBPAF as the objective function and coded phases as optimization variables. Simulations show that compared with the reference BPCS, the average measurement deviation is approximately reduced by 15% and 10% in the case of the optimized MPCS (the code length being 63), when the number of single baseband pulses is two and four, respectively. The longer the length is, the better the MPCS performs over the BPCS. When the transmitted power is beyond a certain value, the nonlinear effect will be significant and the second harmonic signal of the optimized MPCS can be used to estimate current velocity in conjunction with the fundamental signal because the second harmonic signal of the optimized MPCS is still broadband. In this situation, the measurement deviation of using the optimized MPCS will be 44% smaller than that of using the reference BPCS. Since the second harmonic signals of the BPCSs which are modulated with 0 and 180 are eq- ivalent to no phase coding and become narrowband, they have no contribution to the estimation of current velocity.
机译:传统的宽带声学多普勒电流分析器利用诸如Barker码或-sequence之类的二进制相位编码信号(BPCS)作为其传输信号。但是,就当前速度的测量偏差而言,这些BPCS可能不是最佳的。通过分析会影响测量偏差的宽带传输信号的特性,本文给出了数学解释,即测量偏差主要由单个基带脉冲的自相关函数(SBPAF)的平方即SBPAF的能量的平方确定。当单个发射脉冲的持续时间和能量固定时。为了使测量偏差最小,采用了多相位编码信号(MPCS),提出了以SBPAF的能量为目标函数,以编码相位为优化变量的优化MPCS设计方法。仿真表明,与最佳参考BPCS相比,在优化的MPCS(代码长度为63)的情况下,当单个基带脉冲数分别为2和4时,平均测量偏差分别减少了15%和10%。 。长度越长,MPCS相对于BPCS的性能越好。当发射功率超过某个值时,非线性效应将很明显,并且由于优化的MPCS的二次谐波信号仍然很宽带,因此优化的MPCS的二次谐波信号可以与基本信号一起用于估算当前速度。 。在这种情况下,使用优化的MPCS的测量偏差将比使用参考BPCS的测量偏差小44%。由于用0和180调制的BPCS的二次谐波信号等效于没有相位编码并变为窄带,因此它们对当前速度的估算没有贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号