Dept. Ingeniería Eléctrica y Electrónica, Universidad Pública de Navarra, Campus Arrosadía, 31006 Pamplona, Spain.
Med Eng Phys. 2013 Oct;35(10):1431-41. doi: 10.1016/j.medengphy.2013.03.015. Epub 2013 Apr 20.
We present a compact approach to joint modeling of powerline interference (PLI) and baseline wonder (BW) for denoising of biopotential signals. Both PLI and BW are modeled by a set of harmonically related sinusoids modulated by low-order time polynomials. The sinusoids account on the harmonicity and mean instantaneous frequency of the PLI in the analysis window, while the polynomials capture the frequency and amplitude deviations from their nominal values and characterize the BW at the same time. The resulting model is linear-in-parameters and the solution to the corresponding linear system is estimated in a simple and efficient way through linear least-squares. The proposed modeling method was evaluated on real electrocardiographic (ECG) and electromyographic (EMG) signals against three reference methods for different analysis scenarios. The comparative study suggests that the proposed method outperforms the reference methods in terms of residual interference energy in the denoised biopotential signals.
我们提出了一种紧凑的方法,用于联合建模电力线干扰 (PLI) 和基线波动 (BW),以对生物电势信号进行去噪。PLI 和 BW 均由一组受低阶时间多项式调制的谐波相关正弦波建模。正弦波解释了分析窗口中 PLI 的谐波性和平均瞬时频率,而多项式则捕获了频率和幅度偏离其标称值的情况,同时也描述了 BW。由此产生的模型是参数线性的,并且通过线性最小二乘法以简单有效的方式估计相应线性系统的解。针对不同的分析场景,我们针对三种参考方法在真实心电图 (ECG) 和肌电图 (EMG) 信号上评估了所提出的建模方法。比较研究表明,在所提出的方法在去噪生物电势信号中的残余干扰能量方面优于参考方法。