Nnonyelu Chibuzo Joseph, Jiang Meng, Lundgren Jan
Sensible Things that Communicate Research Centre, Mid Sweden University, 852 30 Sundsvall, Sweden.
Sensors (Basel). 2022 Nov 3;22(21):8464. doi: 10.3390/s22218464.
The biaxial velocity sensor comprises two nominally perpendicular particle velocity sensors and a collocated pressure sensor. Due to real-world imperfections in manufacturing or setup errors, the two axes may suffer from perpendicularity losses. To analytically study how skewness affects its direction-finding performance, the hybrid Cramér-Rao bound (HCRB) of the directions-of-arrival for the polar angle, azimuth angle and the skew angle of a biaxial velocity sensor that suffers from stochastic loss of perpendicularity were derived in closed form. The skew angle was modeled as a zero-mean Gaussian random variable of a known variance, which was assumed to be very small, to capture the uncertainty in the orthogonality of the biaxial velocity sensor. The analysis shows that for the polar and azimuth angle, the loss of perpendicularity introduces the variation of the HCRB along the azimuth angle axis, which is independent of the skew angle, but on its variance. The dynamic range of this variation increases as the variance of the skew angle increases. For the estimation of the skew angle, the HCRB of the skew angle is bounded upwards by the variance of the skew angle and varies with the azimuth angle. The hybrid maximum likelihood- maximum a posterior (hybrid ML/MAP) estimator was used to verify the derived bounds.
双轴速度传感器由两个标称相互垂直的质点速度传感器和一个并置的压力传感器组成。由于制造过程中的实际缺陷或设置误差,这两个轴可能会出现垂直度损失。为了分析研究偏斜度如何影响其测向性能,以封闭形式推导了存在随机垂直度损失的双轴速度传感器的极角、方位角和偏斜角的到达方向的混合克拉美-罗界(HCRB)。将偏斜角建模为一个已知方差的零均值高斯随机变量,假定该方差非常小,以捕捉双轴速度传感器正交性中的不确定性。分析表明,对于极角和方位角,垂直度损失会导致HCRB沿方位角轴发生变化,该变化与偏斜角无关,但与偏斜角的方差有关。随着偏斜角方差的增加,这种变化的动态范围增大。对于偏斜角的估计,偏斜角的HCRB上限为偏斜角的方差,并随方位角而变化。使用混合最大似然-最大后验(hybrid ML/MAP)估计器来验证推导的界。