Title :
Efficient link quality estimation in DS spread systems
Author_Institution :
Interstate Electron. Corp., Anaheim, CA, USA
fDate :
30 Sep-3 Oct 1990
Abstract :
The author describes an algorithm for generating a link quality estimate (LQE) for direct-sequence (DS) phase-shift-keyed (PSK) signals that simultaneously possess good estimator properties, low-computational requirements, and a form easily incorporated into a digital receiver architecture. The algorithm exploits the nonlinear magnitude operations, available in the noncoherent and data automatic gain control (AGC) hardware. Taking the ratio of the mean value of two signals obtainable from the AGC circuitry produces a monotonically increasing function of signal-to-noise ratio (SNR) usable as a measure of link quality. Inverting this function provides an estimate of SNR. Extensive Monte Carlo simulation results are presented to quantify the LQE and SNR estimator´s performance. The results show that under reasonable conditions both estimators have an asymptotic unbiased behavior with error variance monotonically decreasing with sample size, suggesting consistency. The performance of the SNR estimator is shown to be superior to that of an alternative SNR estimator previously reported, while possessing reduced complexity
Keywords :
phase shift keying; spread spectrum communication; telecommunication links; DS spread systems; Monte Carlo simulation; PSK signals; SNR estimator; algorithm; asymptotic unbiased behavior; automatic gain control; data AGC hardware; digital receiver architecture; error variance; link quality estimation; mean value; nonlinear magnitude operations; performance; ratio; sample size; signal-to-noise ratio; Computer architecture; Costs; Gain control; Hardware; Monitoring; Optical signal processing; Phase estimation; Phase shift keying; Routing protocols; Signal processing;
Conference_Titel :
Military Communications Conference, 1990. MILCOM '90, Conference Record, A New Era. 1990 IEEE
Conference_Location :
Monterey, CA
DOI :
10.1109/MILCOM.1990.117519