@inproceedings{fccce951e58141e884dc6d34c0f6b336,
title = "Research and development on performance models of thermal imaging systems",
abstract = "Traditional ACQUIRE models perform the discrimination tasks of detection (target orientation, recognition and identification) for military target based upon minimum resolvable temperature difference (MRTD) and Johnson criteria for thermal imaging systems (TIS). Johnson criteria is generally pessimistic for performance predict of sampled imager with the development of focal plane array (FPA) detectors and digital image process technology. Triangle orientation discrimination threshold (TOD) model, minimum temperature difference perceived (MTDP)/ thermal range model (TRM3) Model and target task performance (TTP) metric have been developed to predict the performance of sampled imager, especially TTP metric can provides better accuracy than the Johnson criteria. In this paper, the performance models above are described; channel width metrics have been presented to describe the synthesis performance including modulate translate function (MTF) channel width for high signal noise to ration (SNR) optoelectronic imaging systems and MRTD channel width for low SNR TIS; the under resolvable questions for performance assessment of TIS are indicated; last, the development direction of performance models for TIS are discussed.",
keywords = "Channel width, Johnson criteria, Minimum resolvable temperature difference, Target task performance, Thermal imaging systems",
author = "Wang, {Ji Hui} and Jin, {Wei Qi} and Xia Wang and Cheng, {Yi Nan}",
year = "2009",
doi = "10.1117/12.834693",
language = "English",
isbn = "9780819476647",
series = "Proceedings of SPIE - The International Society for Optical Engineering",
booktitle = "International Symposium on Photoelectronic Detection and Imaging 2009 - Advances in Infrared Imaging and Applications",
note = "International Symposium on Photoelectronic Detection and Imaging 2009: Advances in Infrared Imaging and Applications ; Conference date: 17-06-2009 Through 19-06-2009",
}