Imaging live humans through smoke and flames using far-infrared digital holography

The ability to see behind flames is a key challenge for the industrial field and particularly for the safety field. Development of new technologies to detect live people through smoke and flames in fire scenes is an extremely desirable goal since it can save human lives. The latest technologies, including equipment adopted by fire departments, use infrared bolometers for infrared digital cameras that allow users to see through smoke. However, such detectors are blinded by flame-emitted radiation. Here we show a completely different approach that makes use of lensless digital holography technology in the infrared range for successful imaging through smoke and flames. Notably, we demonstrate that digital holography with a cw laser allows the recording of dynamic human-size targets. In this work, easy detection of live, moving people is achieved through both smoke and flames, thus demonstrating the capability of digital holography at 10.6 μm.

Tags
Data and Resources
To access the resources you must log in

This item has no data

Identity

Description: The Identity category includes attributes that support the identification of the resource.

Field Value
PID https://www.doi.org/10.6084/m9.figshare.c.3764798
PID https://www.doi.org/10.6084/m9.figshare.c.3764798.v1
URL https://dx.doi.org/10.6084/m9.figshare.c.3764798.v1
URL https://dx.doi.org/10.6084/m9.figshare.c.3764798
Access Modality

Description: The Access Modality category includes attributes that report the modality of exploitation of the resource.

Field Value
Access Right not available
Attribution

Description: Authorships and contributors

Field Value
Author M. Locatelli
Author E. Pugliese
Author M. Paturzo
Author V. Bianco
Author A. Finizio
Author A. Pelagotti
Author P. Poggi
Author L. Miccio
Author R. Meucci
Author P. Ferraro
Publishing

Description: Attributes about the publishing venue (e.g. journal) and deposit location (e.g. repository)

Field Value
Collected From Datacite
Hosted By figshare
Publication Date 2017-04-28
Publisher Figshare
Additional Info
Field Value
Language Undetermined
Resource Type Dataset
keyword FOS: Chemical sciences
keyword FOS: Computer and information sciences
system:type dataset
Management Info
Field Value
Source https://science-innovation-policy.openaire.eu/search/dataset?datasetId=dedup_wf_001::33ccfda3003fd1bb3433dfd50eeb702c
Author jsonws_user
Last Updated 1 January 2021, 13:40 (CET)
Created 1 January 2021, 13:40 (CET)