School of Information Engineering, Wuhan University of Technology, Wuhan 430070, China.
School of Navigation, Wuhan University of Technology, Wuhan 430063, China.
Sensors (Basel). 2019 Jan 1;19(1):120. doi: 10.3390/s19010120.
In this paper, we consider the problem of decision fusion for noncoherent detection in a wireless sensor network. Novel to the current work is the integration of the hybrid multi-access channel (MAC) in the fusion rule design. We assume that sensors transmit their local binary decisions over a hybrid MAC which is a composite of conventional orthogonal and nonorthogonal MACs. Under Rayleigh fading scenario, we present a likelihood ratio (LR)-based fusion rule, which has been shown to be optimal through theoretical analysis and simulation. However, it requires a large amount of computation, which is not easily implemented in resource-constrained sensor networks. Therefore, three sub-optimal alternatives with low-complexity are proposed, namely the weighed energy detector (WED), the deflection-coefficient-maximization (DCM), and the two-step (TS) rules. We show that when the channel signal-to-noise ratio (SNR) is low, the LR-based fusion rule reduces to the WED rule; at high-channel SNR, it is equivalent to the TS rule; and at moderate-channel SNR, it can be approached closely by the DCM rule. Compared with the conventional orthogonal and nonorthogonal MACs, numerical results show that the hybrid MAC with the proposed fusion rules can improve the detection performance when the channel SNR is medium.
在本文中,我们考虑了在无线传感器网络中非相干检测的决策融合问题。与当前工作不同的是,混合多址接入信道(MAC)被集成到融合规则设计中。我们假设传感器通过混合 MAC 传输其本地二进制决策,混合 MAC 是传统正交和非正交 MAC 的组合。在瑞利衰落场景下,我们提出了一种基于似然比(LR)的融合规则,通过理论分析和仿真证明了该规则的最优性。然而,它需要大量的计算,这在资源受限的传感器网络中不容易实现。因此,提出了三种具有低复杂度的次优替代方案,即加权能量检测器(WED)、偏导系数最大化(DCM)和两步(TS)规则。我们表明,当信道信噪比(SNR)较低时,基于 LR 的融合规则简化为 WED 规则;在高信道 SNR 时,它等效于 TS 规则;在中等信道 SNR 时,它可以通过 DCM 规则接近。与传统的正交和非正交 MAC 相比,数值结果表明,当信道 SNR 为中等时,具有所提出融合规则的混合 MAC 可以提高检测性能。