Title :
Low-complexity noncoherent fusion rules for wireless sensor networks monitoring multiple events
Author :
Fucheng Yang ; Lie-Liang Yang
Author_Institution :
Sch. of Electron. & Comput. Sci., Univ. of Southampton, Southampton, UK
Abstract :
Parallel triple-layer wireless sensor network (WSN) assisted by frequency-hopping (FH) and M-ary frequency-shift keying (MFSK) modulation, abbreviated FH/MFSK WSN, is proposed to monitor multiple source events (SEs) each having multiple states. The SEs are simultaneously observed by a few local sensor nodes (LSNs), which convey their decisions to a fusion center (FC) where the SEs´ states are classified (detected) based on noncoherent fusion rules. In this paper, four low-complexity noncoherent fusion rules are studied. They are the conventional benchmark of equal-gain combining (EGC) and three proposed noncoherent fusion rules, namely erasure-supported EGC (ES-EGC), EGC-assisted N-order iterative interference cancellation (IIC), and ES-EGC-assisted N-order IIC. The complexity of these fusion rules is analyzed and the performance of the FH/MFSK WSN employing these fusion rules is investigated and compared when wireless channels from LSNs to the FC experience Rayleigh fading.
Keywords :
Rayleigh channels; frequency shift keying; interference suppression; iterative methods; radiofrequency interference; sensor fusion; wireless sensor networks; ES-EGC; FH-MFSK WSN; M-ary frequency-shift keying modulation; MFSK modulation; N-order IIC; N-order iterative interference cancellation; Rayleigh fading; equal-gain combining; erasure-supported EGC; frequency hopping; fusion center; local sensor nodes; noncoherent fusion rules; source events; wireless channels; wireless sensor networks; Complexity theory; Diversity reception; Frequency modulation; Monitoring; Noise measurement; Reliability; Wireless sensor networks;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
DOI :
10.1109/TAES.2013.130125