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Numerically efficient mean squared error threshold SNR prediction for adaptive arrays

Publication ,  Conference
Richmond, CD
Published in: 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010
December 20, 2010

The method of interval estimation (MIE) is an established technique for extending asymptotic mean squared error (MSE) predictions like the Cramér-Rao bound to lower signal-to-noise ratio. While application of MIE to the adaptive array problem was successful in [1], the numerical integration required to compute the pairwise error probabilities central to MIE is computationally expensive. This is primarily due to the double integral required, moreover, the integrand itself involves the Marcum Q-function, a specialize function that can be represented as an integral or infinite series. System analysis and design often requires computing MSE performance over a wide search space that easily demands hundreds to tens of thousands of repeated calculations of the pairwise error probabilities. To support this demand two approaches to approximating the required error probabilities are explored herein, one yielding a near ∼235 times speedup factor in computation without major loss in accuracy of MSE prediction. © 2010 IEEE.

Duke Scholars

Published In

2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010

DOI

Publication Date

December 20, 2010

Start / End Page

101 / 104
 

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Richmond, C. D. (2010). Numerically efficient mean squared error threshold SNR prediction for adaptive arrays. In 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010 (pp. 101–104). https://doi.org/10.1109/SAM.2010.5606709
Richmond, C. D. “Numerically efficient mean squared error threshold SNR prediction for adaptive arrays.” In 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010, 101–4, 2010. https://doi.org/10.1109/SAM.2010.5606709.
Richmond CD. Numerically efficient mean squared error threshold SNR prediction for adaptive arrays. In: 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010. 2010. p. 101–4.
Richmond, C. D. “Numerically efficient mean squared error threshold SNR prediction for adaptive arrays.” 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010, 2010, pp. 101–04. Scopus, doi:10.1109/SAM.2010.5606709.
Richmond CD. Numerically efficient mean squared error threshold SNR prediction for adaptive arrays. 2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010. 2010. p. 101–104.

Published In

2010 IEEE Sensor Array and Multichannel Signal Processing Workshop, SAM 2010

DOI

Publication Date

December 20, 2010

Start / End Page

101 / 104