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040 |aCaOODSP|beng|erda|cCaOODSP
0410 |aeng|beng|bfre
0861 |aD68-8/074-2013E-PDF
1001 |aSimard, J.-R., |eauthor.
24510|aSpectrally resolved laser-induced fluorescence lidar based stand-off biodetection systems / |cJ.-R. Simard, S. Buteau, P. Lahaie, DRDC Valcartier.
264 1|aQuebec (Quebec) : |bDefence Research and Development Canada - Valcartier, |c2013.
264 4|c©2013
300 |a1 online resource (ii, 36 pages, 2 unnumbered pages) : |bcolour illustrations.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
4901 |aScientific literature ; |vDRDC Valcartier SL 2013-074
500 |a"February 2013."
504 |aIncludes bibliographical references (pages 23-26).
5203 |a"Over the years, monitoring rapidly wide areas for the presence of threatening bioaerosols has become an important objective for defense and public security. This chapter describes an important contending technology showing valuable capability to achieve that goal: Spectrally Resolved Laser-Induced Fluorescence Lidars. After an introduction to this subject, the fundamental Lidar theory associated with this specific technology is derived. Then, the robustness, specificity and sensitivity of this technique to recognize the class of bioaerosols from a remote position are discussed. Subsequently, a statistical multi-variate method based on the Mahalanobis distance and used to extract the bioaerosol classification from the collected spectral data is detailed. Finally, a conclusion reviews the key issues associated with this inelastic Lidar technology as an important component of a complete threatening bioaerosol defense suite"--Abstract, page i.
546 |aIncludes abstracts in English and French.
7101 |aCanada. |bDefence R&D Canada.
7102 |aDefence R&D Canada - Valcartier.
830#0|aScientific literature (Defence R&D Canada)|vDRDC Valcartier SL 2013-074.|w(CaOODSP)9.822195
85640|qPDF|s23.77 MB|uhttps://publications.gc.ca/collections/collection_2019/rddc-drdc/D68-8-074-2013-eng.pdf