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NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION.

Publication ,  Journal Article
Hodgkiss, WS; Nolte, LW
Published in: IEEE Transactions on Information Theory
1975

The performance of a likelihood ratio processor must often be determined via computer simulation. This correspondence suggests an effective method of calculating the receiver operating characteristic (ROC) that avoids emphasizing the upper tail region of the likelihood ratio's estimated probability density function. A specific example is presented.

Duke Scholars

Published In

IEEE Transactions on Information Theory

Publication Date

1975

Volume

IT-21

Issue

6

Start / End Page

695 / 698

Related Subject Headings

  • Networking & Telecommunications
  • 1005 Communications Technologies
  • 0906 Electrical and Electronic Engineering
  • 0801 Artificial Intelligence and Image Processing
 

Citation

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Hodgkiss, W. S., & Nolte, L. W. (1975). NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION. IEEE Transactions on Information Theory, IT-21(6), 695–698.
Hodgkiss, W. S., and L. W. Nolte. “NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION.IEEE Transactions on Information Theory IT-21, no. 6 (1975): 695–98.
Hodgkiss WS, Nolte LW. NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION. IEEE Transactions on Information Theory. 1975;IT-21(6):695–8.
Hodgkiss, W. S., and L. W. Nolte. “NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION.IEEE Transactions on Information Theory, vol. IT-21, no. 6, 1975, pp. 695–98.
Hodgkiss WS, Nolte LW. NOTE ON THE CALCULATION OF PERFORMANCE FOR LIKELIHOOD RATIO PROCESSORS VIA COMPUTER SIMULATION. IEEE Transactions on Information Theory. 1975;IT-21(6):695–698.

Published In

IEEE Transactions on Information Theory

Publication Date

1975

Volume

IT-21

Issue

6

Start / End Page

695 / 698

Related Subject Headings

  • Networking & Telecommunications
  • 1005 Communications Technologies
  • 0906 Electrical and Electronic Engineering
  • 0801 Artificial Intelligence and Image Processing