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Massive MIMO for Wireless Sensing with a Coherent Multiple Access Channel

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arxiv 1408.2192 v2 pith:TJUI4AIN submitted 2014-08-10 cs.IT math.IT

Massive MIMO for Wireless Sensing with a Coherent Multiple Access Channel

classification cs.IT math.IT
keywords detectorsensorantennasnumberpowerchanneldetectionmultiple
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider the detection and estimation of a zero-mean Gaussian signal in a wireless sensor network with a coherent multiple access channel, when the fusion center (FC) is configured with a large number of antennas and the wireless channels between the sensor nodes and FC experience Rayleigh fading. For the detection problem, we study the Neyman-Pearson (NP) Detector and Energy Detector (ED), and find optimal values for the sensor transmission gains. For the NP detector which requires channel state information (CSI), we show that detection performance remains asymptotically constant with the number of FC antennas if the sensor transmit power decreases proportionally with the increase in the number of antennas. Performance bounds show that the benefit of multiple antennas at the FC disappears as the transmit power grows. The results of the NP detector are also generalized to the linear minimum mean squared error estimator. For the ED which does not require CSI, we derive optimal gains that maximize the deflection coefficient of the detector, and we show that a constant deflection can be asymptotically achieved if the sensor transmit power scales as the inverse square root of the number of FC antennas. Unlike the NP detector, for high sensor power the multi-antenna ED is observed to empirically have significantly better performance than the single-antenna implementation. A number of simulation results are included to validate the analysis.

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