T. C. Yang, M. Siderius; Low frequency phase coherent communications in the Sicily Strait, Proceedings of MTS/IEEE OCEANS'00 Conference, pp. 1005 - 1009, September 2000.
T. C. Yang, Kwang Yoo; Internal wave spectrum in shallow water: Measurement and comparison with the Garrett-Munk model, IEEE J. Oceanic Eng., vol. 24, pp. 333 - 345, July 1999.
T. C. Yang, T. W. Yates; Acoustic inversion of bottom reflectivity and bottom sound-speed profile, IEEE J. Oceanic Eng., vol. 21, pp. 367 - 376, October 1996.
T. C. Yang, Azmi Al-Kurd; The internal waves effect on the noise vertical directionality in shallow water, Proceedings of MTS/IEEE OCEANS'96 Conference, pp. 9 - 16, September 1996.
T. C. Yang, Kwang Yoo; Influence of acoustic environment on the vertical directionality of ambient noise in coastal water, Proceedings of MTS/IEEE OCEANS'96 Conference, pp. 351 - 357, September 1996.
T. C. Yang, T. Yates; Acoustic inversion of bottom reflectivity and bottom sound speed profile in shallow water, Proceedings of MTS/IEEE OCEANS'95 Conference, pp. 1054 - 1060, September 1995.
T. C. Yang heads the Dispersive Waveguide Effects group in the Signal Processing Branch of the Acoustic Division of the Naval Research Laboratory, Washington, DC. He has been active in arctic acoustics for over ten years, conducting research on experimental measurements and theoretical modeling of ice reflectivity, low-frequency arctic transmission loss, ambient noise directionality, ice vibrations and geophone response, array wet end design, and ice mounted system performance. He is currently working on signal processing algorithms for shallow-water deployable systems and studying environmental impacts on high data rate coherent underwater acoustic communications. He pioneered matched mode processing and matched beam processing which are variations of matched field processing designed to improve source detection and localization in long-range mode-dominated deep-water environments and complex multipath shallow-water environments, respectively. He has led many at-sea experiments.