References

1. R. VOLLMERHAUSEN, “INCORPORATING DISPLAY LIMITATIONS INTO NIGHT VISION PERFORMANCE MODELS,” IN IRIS PASSIVE SENSORS, PROCEEDINGS OF THE INFRARED INFORMATION SYMPOSIUM, ENVIRONMENTAL RESEARCH INSTITUTE OF MICHIGAN, VOL. 2, PP. 11–31. 13, (1995).
2. ELECTRO-OPTICAL IMAGING: SYSTEM PERFORMANCE AND MODELING, LUCIEN M. BIBERMAN, ED., CH 12, “MODELING THE PERFORMANCE OF IMAGING SENSORS,” RICHARD VOLLMERHAUSEN, SPIE PRESS, BELLINGHAM (2000).
3. R. H. VOLLMERHAUSEN, E. JACOBS, J. HIXSON, AND M. FRIEDMAN, “THE TARGETING TASK PERFORMANCE (TTP) METRIC: A NEW MODEL FOR PREDICTING TARGET ACQUISITION PERFORMANCE,” TECH. REP. (DTICAMSEL-NV-TR-230, U.S. ARMY RESEARCH, DEVELOPMENT AND ENGINEERING COMMAND, COMMUNICATIONS AND ELECTRONICS RESEARCH, DEVELOPMENT AND ENGINEERING CENTER, NIGHT VISION AND ELECTRONIC SENSORS DIRECTORATE, 10221 BURBECK RD., FT. BELVOIR, VA 22060-5806 (2005).
4. R. H. VOLLMERHAUSEN, E. JACOBS, AND R. G. DRIGGERS, “NEW METRIC FOR PREDICTING TARGET ACQUISITION PERFORMANCE,” OPT. ENG. (BELLINGHAM) 43, 2806–2818 (2004).
5. R. VOLLMERHAUSEN AND A. L. ROBINSON, “MODELING TARGET ACQUISITION TASKS ASSOCIATED WITH SECURITY AND SURVEILLANCE,” APPL. OPT. 46, 4209–4221 (2007).
6. RH VOLLMERHAUSEN, S MOYER, K KRAPELS, RG DRIGGERS, JG HIXSON, “PREDICTING THE PROBABILITY OF FACIAL IDENTIFICATION USING A SPECIFIC OBJECT MODEL,” APPLIED OPTICS 47 (6), 751-759 (2007).
7. RICHARD H. VOLLMERHAUSEN, “REPRESENTING THE OBSERVER IN ELECTRO-OPTICAL TARGET ACQUISITION MODELS,” OPTICS EXPRESS 17 (20), 17253-17268 (2009)
8. BRADLEY L. PREECE, JEFFREY T. OLSON, JOSEPH P. REYNOLDS, JONATHAN D. FANNING, “IMPROVED NOISE MODEL FOR THE US ARMY SENSOR PERFORMANCE METRIC,” PROC. OF SPIE VOL. 8014 801406 (2011)
9. BRADLEY L. PREECE, JEFFREY T. OLSON, JOSEPH P. REYNOLDS, JONATHAN D. FANNING, AND DAVID P. HAEFNER, “HUMAN VISION NOISE MODEL VALIDATION FOR THE U.S. ARMY SENSOR PERFORMANCE METRIC,” OPTICAL ENGINEERING 53(6), 061712 (2014)
10. ROBERT SHORT, DUKE LITTLEJOHN, JOHN BAILEY, AND RONALD DRIGGERS, ”INFRARED SENSOR PERFORMANCE WITH BOOST AND RESTORATION FILTERING,” APPLIED OPTICS, VOL. 60, ISSUE 3, PP. 571-579 (2021)
11 RONALD DRIGGERS, GLENN GORANSON, STEVE BUTRIMAS, GERALD HOLST AND ORGES FURXHI, ’SIMPLE TARGET ACQUISITION MODEL BASED ON FΛ/D,” OPTICAL ENGINEERING, VOL. 60(2), 023104-1 (2021

14. R. J. BEATON, AND W. W. FARLEY, “COMPARATIVE STUDY OF THE MTFA, ICS, AND SQRI IMAGE QUALITY METRICS FOR VISUAL DISPLAY SYSTEMS,” ARMSTRONG LAB., AIR FORCE SYSTEMS COMMAND, WRIGHT-PATTERSON AFB, OH, REPORT AL, TR-1992–0001, DTIC ADA252116, (1991)
15. RICHARD H. VOLLMERHAUSEN, RONALD G. DRIGGERS, AND DAVID L. WILSON, “PREDICTING RANGE PERFORMANCE OF SAMPLED IMAGERS BY TREATING ALIASED SIGNAL AS TARGET-DEPENDENT NOISE,” J. OPT. SOC. AM. A/VOL. 25, NO. 8 (2000)
16. RICHARD H. VOLLMERHAUSEN, RONALD G. DRIGGERS, AND DAVID L. WILSON, “PREDICTING RANGE PERFORMANCE OF SAMPLED IMAGERS BY TREATING ALIASED SIGNAL AS TARGET-DEPENDENT NOISE: ERRATUM,” J. OPT. SOC. AM. A/VOL. 25, NO. 8 (2000)
17. RG DRIGGERS, R VOLLMERHAUSEN, B O’KANE, “EQUIVALENT BLUR AS A FUNCTION OF SPURIOUS RESPONSE OF A SAMPLED IMAGING SYSTEM: APPLICATION TO CHARACTER RECOGNITION,” J. OPT. SOC. AM. A, VOL. 16 (5) ,1026-1033 (1999)
18. R. A. MOSES AND W. M. HART, “THE TEMPORAL RESPONSIVENESS OF VISION,’ IN ADLER’S PHYSIOLOGY OF THE EYE: CLINICAL,” APPLICATION, MOSBY (1987)
19. N.S. NAGARAJA, “EFFECT OF LUMINANCE NOISE ON CONTRAST THRESHOLDS, J. OPT. SOC. AM. 54(7), 950-955 (1964)
20. D. G. PELLI, ‘‘WHY USE NOISE?’’ J. OPT. SOC. AM. A 16͑3͒, 647–653 (1999)
21. M. RAGHAVAN, ‘‘SOURCES OF VISUAL NOISE,’’ PHD DISSERTATION, SYRACUSE, NY, (1987)
22. H. DAVSON, PHYSIOLOGY OF THE EYE, 5TH ED., MACMILLAN, LONDON (1990)
23. PETER G. . BARTEN, CONTRAST SENSITIVITY OF THE HUMAN EYE AND ITS EFFECTS ON IMAGE QUALITY, [PHD THESIS 1 (RESEARCH TU/E / GRADUATION TU/E), INSTITUTE FOR PERCEPTION RESEARCH, EINDHOVEN]. TECHNISCHE UNIVERSITEIT EINDHOVEN. HTTPS://DOI.ORG/10.6100/IR523072 (2005)
24. RH VOLLMERHAUSEN, T BUI, “USING A TARGETING METRIC TO PREDICT THE UTILITY OF AN EO IMAGER AS A PILOTAGE AID,” INFRARED IMAGI
25. RICHARD K. MOORE, EDDIE L. JACOBS, CARL E. HALFORD, “CELL BALANCING FOR VEHICLE IDENTIFICATION PERCEPTION EXPERIMENTS AND CORRECTING FOR CELL IMBALANCE IN TEST RESULTS,” PROC. OF SPIE VOL. 6543 65430D-6 , 2007.23. PETER G. . BARTEN, CONTRAST SENSITIVITY OF THE
12. RICHARD H. VOLLMERHAUSEN, “NIGHT VISION INTEGRATED PERFORMANCE MODEL: IMPACT OF A RECENT CHANGE ON THE MODEL’S PREDICTIVE ACCURACY,” OPTICS EXPRESS, VOL. 24, NO. 21, 23654-23666 (2016)
13. P. G. J. BARTEN, “FORMULA FOR THE CONTRAST SENSITIVITY OF THE HUMAN EYE,” PROC. SPIE 5294, 231–238 (2004) (PAPER AVAILABLE ON THE WEB AT HTTP://WWW.SPIE.ORG).

Scroll to Top