Martin Cadirola

Ecotronics Ventures LLC

Research Interests

IP telephony
UAV sensor research & development
Lidar for weather research
Ocean Engineering
Atmospheric Science
Geochemistry and Petrology
Ecology
Forestry
Geophysics
Oceanography
Space and Planetary Science
Paleontology
Earth-Surface Processes
Soil Science
Water Science and Technology
Aquatic Science
Atomic and Molecular Physics, and Optics
Electrical and Electronic Engineering

Publications

The web-wide world

Nature / Feb 01, 2006

Butler, D. (2006). The web-wide world. Nature, 439(7078), 776–778. https://doi.org/10.1038/439776a

Raman Lidar Measurements during the International H2O Project. Part I: Instrumentation and Analysis Techniques

Journal of Atmospheric and Oceanic Technology / Feb 01, 2006

Whiteman, D. N., Demoz, B., Rush, K., Schwemmer, G., Gentry, B., Di Girolamo, P., Comer, J., Veselovskii, I., Evans, K., Melfi, S. H., Wang, Z., Cadirola, M., Mielke, B., Venable, D., & Van Hove, T. (2006). Raman Lidar Measurements during the International H2O Project. Part I: Instrumentation and Analysis Techniques. Journal of Atmospheric and Oceanic Technology, 23(2), 157–169. https://doi.org/10.1175/jtech1838.1

Raman lidar measurements of water vapor and cirrus clouds during the passage of Hurricane Bonnie

Journal of Geophysical Research: Atmospheres / Mar 01, 2001

Whiteman, D. N., Evans, K. D., Demoz, B., Starr, D. O., Eloranta, E. W., Tobin, D., Feltz, W., Jedlovec, G. J., Gutman, S. I., Schwemmer, G. K., Cadirola, M., Melfi, S. H., & Schmidlin, F. J. (2001). Raman lidar measurements of water vapor and cirrus clouds during the passage of Hurricane Bonnie. Journal of Geophysical Research: Atmospheres, 106(D6), 5211–5225. Portico. https://doi.org/10.1029/2000jd900621

Airborne and Ground-Based Measurements Using a High-Performance Raman Lidar

Journal of Atmospheric and Oceanic Technology / Nov 01, 2010

Whiteman, D. N., Rush, K., Rabenhorst, S., Welch, W., Cadirola, M., McIntire, G., Russo, F., Adam, M., Venable, D., Connell, R., Veselovskii, I., Forno, R., Mielke, B., Stein, B., Leblanc, T., McDermid, S., & Vömel, H. (2010). Airborne and Ground-Based Measurements Using a High-Performance Raman Lidar. Journal of Atmospheric and Oceanic Technology, 27(11), 1781–1801. https://doi.org/10.1175/2010jtecha1391.1

Demonstration Measurements of Water Vapor, Cirrus Clouds, and Carbon Dioxide Using a High-Performance Raman Lidar

Journal of Atmospheric and Oceanic Technology / Aug 01, 2007

Whiteman, D. N., Rush, K., Veselovskii, I., Cadirola, M., Comer, J., Potter, J. R., & Tola, R. (2007). Demonstration Measurements of Water Vapor, Cirrus Clouds, and Carbon Dioxide Using a High-Performance Raman Lidar. Journal of Atmospheric and Oceanic Technology, 24(8), 1377–1388. https://doi.org/10.1175/jtech2058.1

Correction technique for Raman water vapor lidar signal-dependent bias and suitability for water vapor trend monitoring in the upper troposphere

Atmospheric Measurement Techniques / Nov 28, 2012

Whiteman, D. N., Cadirola, M., Venable, D., Calhoun, M., Miloshevich, L., Vermeesch, K., Twigg, L., Dirisu, A., Hurst, D., Hall, E., Jordan, A., & Vömel, H. (2012). Correction technique for Raman water vapor lidar signal-dependent bias and suitability for water vapor trend monitoring in the upper troposphere. Atmospheric Measurement Techniques, 5(11), 2893–2916. https://doi.org/10.5194/amt-5-2893-2012

Effect of FEC mechanisms in the performance of low bit rate codecs in lossy mobile environments

Proceedings of the Conference on Principles, Systems and Applications of IP Telecommunications / Oct 01, 2014

Herrero, R., & Cadirola, M. (2014, October). Effect of FEC mechanisms in the performance of low bit rate codecs in lossy mobile environments. Proceedings of the Conference on Principles, Systems and Applications of IP Telecommunications. https://doi.org/10.1145/2670386.2670387

Measurements of Humidity in the Atmosphere and Validation Experiments (MOHAVE)-2009: overview of campaign operations and results

May 31, 2011

Leblanc, T., Walsh, T. D., McDermid, I. S., Toon, G. C., Blavier, J.-F., Haines, B., Read, W. G., Herman, B., Fetzer, E., Sander, S., Pongetti, T., Whiteman, D. N., McGee, T. G., Twigg, L., Sumnicht, G., Venable, D., Calhoun, M., Dirisu, A., Hurst, D., … Hauchecorne, A. (2011). Measurements of Humidity in the Atmosphere and Validation Experiments (MOHAVE)-2009: overview of campaign operations and results. https://doi.org/10.5194/amtd-4-3277-2011

Preprocessing and compression of Hyperspectral images captured onboard UAVs

SPIE Proceedings / Oct 13, 2015

Herrero, R., Cadirola, M., & Ingle, V. K. (2015). Preprocessing and compression of Hyperspectral images captured onboard UAVs. In E. M. Carapezza, P. G. Datskos, C. Tsamis, L. Laycock, & H. J. White (Eds.), Unmanned/Unattended Sensors and Sensor Networks XI; and Advanced Free-Space Optical Communication Techniques and Applications. SPIE. https://doi.org/10.1117/12.2186169

Assessing the temperature dependence of narrow-band Raman water vapor lidar measurements: a practical approach

Applied Optics / Jul 24, 2013

Whiteman, D. N., Venable, D. D., Walker, M., Cadirola, M., Sakai, T., & Veselovskii, I. (2013). Assessing the temperature dependence of narrow-band Raman water vapor lidar measurements: a practical approach. Applied Optics, 52(22), 5376. https://doi.org/10.1364/ao.52.005376

Coincident Measurements of Atmospheric Aerosol Properties and Water Vapor by a Scanning Raman Lidar

Optical Remote Sensing of the Atmosphere / Jan 01, 1993

Ferrare, R. A., Melfi, S. H., Whiteman, D. N., & Evans, K. D. (1993). Coincident Measurements of Atmospheric Aerosol Properties and Water Vapor by a Scanning Raman Lidar. Optical Remote Sensing of the Atmosphere. https://doi.org/10.1364/orsa.1993.mb.2

Raman Lidar Measurements during the International H2O Project. Part II: Case Studies

Journal of Atmospheric and Oceanic Technology / Feb 01, 2006

Whiteman, D. N., Demoz, B., Schwemmer, G., Gentry, B., Di Girolamo, P., Sabatino, D., Comer, J., Veselovskii, I., Evans, K., Lin, R.-F., Wang, Z., Behrendt, A., Wulfmeyer, V., Browell, E., Ferrare, R., Ismail, S., & Wang, J. (2006). Raman Lidar Measurements during the International H2O Project. Part II: Case Studies. Journal of Atmospheric and Oceanic Technology, 23(2), 170–183. https://doi.org/10.1175/jtech1839.1

Measurements of Humidity in the Atmosphere and Validation Experiments (MOHAVE)-2009: overview of campaign operations and results

Atmospheric Measurement Techniques / Dec 01, 2011

Leblanc, T., Walsh, T. D., McDermid, I. S., Toon, G. C., Blavier, J.-F., Haines, B., Read, W. G., Herman, B., Fetzer, E., Sander, S., Pongetti, T., Whiteman, D. N., McGee, T. G., Twigg, L., Sumnicht, G., Venable, D., Calhoun, M., Dirisu, A., Hurst, D., … Hauchecorne, A. (2011). Measurements of Humidity in the Atmosphere and Validation Experiments (MOHAVE)-2009: overview of campaign operations and results. Atmospheric Measurement Techniques, 4(12), 2579–2605. https://doi.org/10.5194/amt-4-2579-2011

Use of Raman lidar for validation of aqua retrievals and the study of airs radiances

IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477)

Whiteman, D., Demoz, B., Zhien Wang, Barnet, C., Hoff, R., McMillan, W., Veselovskii, I., McCann, K., Russo, F., Gambacorta, A., Lightner, K., Maddy, E., Comer, J., Kolb, N., DeSlover, D., Jedlovec, G., & Cadirola, M. (n.d.). Use of Raman lidar for validation of aqua retrievals and the study of airs radiances. IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477). https://doi.org/10.1109/igarss.2003.1294241

Raman LIDAR detection of cloud base

Geophysical Research Letters / Jul 01, 2000

Demoz, B., Starr, D., Whiteman, D., Evans, K., Hlavka, D., & Peravali, R. (2000). Raman LIDAR detection of cloud base. Geophysical Research Letters, 27(13), 1899–1902. Portico. https://doi.org/10.1029/1999gl010941

Mathematical and Numerical Analyses of Peridynamics for Multiscale Materials Modeling

Nov 12, 2014

Du, Q. (2014). Mathematical and Numerical Analyses of Peridynamics for Multiscale Materials Modeling. Office of Scientific and Technical Information (OSTI). https://doi.org/10.2172/1163672

Effects of preprocessing applied to the compression of ultraspectral images

Algorithms and Technologies for Multispectral, Hyperspectral, and Ultraspectral Imagery XX / Jun 13, 2014

Herrero, R., Cadirola, M., & Ingle, V. K. (2014). Effects of preprocessing applied to the compression of ultraspectral images. In M. Velez-Reyes & F. A. Kruse (Eds.), SPIE Proceedings. SPIE. https://doi.org/10.1117/12.2048639

Tracking Air Pollution in the City of Baltimore, Maryland Utilizing Light Detection and Ranging (LIDAR)

International Journal of Environmental Science and Development / Jan 01, 2017

McCullum, L. B. (2017). Tracking Air Pollution in the City of Baltimore, Maryland Utilizing Light Detection and Ranging (LIDAR). International Journal of Environmental Science and Development, 8(10), 703–706. https://doi.org/10.18178/ijesd.2017.8.10.1042

Analysis of Raman lidar and radiosonde measurements from the AWEX‐G field campaign and its relation to Aqua validation

Journal of Geophysical Research: Atmospheres / Apr 12, 2006

Whiteman, D. N., Russo, F., Demoz, B., Miloshevich, L. M., Veselovskii, I., Hannon, S., Wang, Z., Vömel, H., Schmidlin, F., Lesht, B., Moore, P. J., Beebe, A. S., Gambacorta, A., & Barnet, C. (2006). Analysis of Raman lidar and radiosonde measurements from the AWEX‐G field campaign and its relation to Aqua validation. Journal of Geophysical Research: Atmospheres, 111(D9). Portico. https://doi.org/10.1029/2005jd006429

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