Xiong Hailiang, Zhang Wensheng, Xu Hongji, Du Zhengfeng, Tang Huaibin, Li Jing
School of Information Science and Engineering, Shandong University, Jinan 250100, China.
School of Microelectronics, Shandong University, Jinan 250100, China.
Sensors (Basel). 2017 May 25;17(6):1206. doi: 10.3390/s17061206.
With the rapid development of wireless communication systems and electronic techniques, the limited frequency spectrum resources are shared with various wireless devices, leading to a crowded and challenging coexistence circumstance. Cognitive radio (CR) and ultra-wide band (UWB), as sophisticated wireless techniques, have been considered as significant solutions to solve the harmonious coexistence issues. UWB wireless sensors can share the spectrum with primary user (PU) systems without harmful interference. The in-band interference of UWB systems should be considered because such interference can severely affect the transmissions of UWB wireless systems. In order to solve the in-band interference issues for UWB wireless sensor networks (WSN), a novel in-band narrow band interferences (NBIs) elimination scheme is proposed in this paper. The proposed narrow band interferences suppression scheme is based on a novel complex-coefficient adaptive notch filter unit with a single constrained zero-pole pair. Moreover, in order to reduce the computation complexity of the proposed scheme, an adaptive complex-coefficient iterative method based on two-order Taylor series is designed. To cope with multiple narrow band interferences, a linear cascaded high order adaptive filter and a cyclic cascaded high order matrix adaptive filter (CCHOMAF) interference suppression algorithm based on the basic adaptive notch filter unit are also presented. The theoretical analysis and numerical simulation results indicate that the proposed CCHOMAF algorithm can achieve better performance in terms of average bit error rate for UWB WSNs. The proposed in-band NBIs elimination scheme can significantly improve the reception performance of low-cost and low-power UWB wireless systems.
随着无线通信系统和电子技术的飞速发展,有限的频谱资源被各种无线设备共享,导致了一种拥挤且具有挑战性的共存环境。认知无线电(CR)和超宽带(UWB)作为先进的无线技术,被视为解决和谐共存问题的重要方案。UWB无线传感器可以与主用户(PU)系统共享频谱而不会产生有害干扰。UWB系统的带内干扰应予以考虑,因为这种干扰会严重影响UWB无线系统的传输。为了解决UWB无线传感器网络(WSN)的带内干扰问题,本文提出了一种新颖的带内窄带干扰(NBI)消除方案。所提出的窄带干扰抑制方案基于一种具有单个约束零极点对的新型复系数自适应陷波滤波器单元。此外,为了降低所提方案的计算复杂度,设计了一种基于二阶泰勒级数的自适应复系数迭代方法。为了应对多个窄带干扰,还提出了一种基于基本自适应陷波滤波器单元的线性级联高阶自适应滤波器和循环级联高阶矩阵自适应滤波器(CCHOMAF)干扰抑制算法。理论分析和数值模拟结果表明,所提出的CCHOMAF算法在UWB WSN的平均误码率方面可以实现更好的性能。所提出的带内NBI消除方案可以显著提高低成本、低功耗UWB无线系统的接收性能。