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D.B. Kilfoyle, A.B. Baggeroer, The state of the art in underwater acoustic telemetry, IEEE Journal of Oceanic Engineering 25 (1) (2000) 4--27.

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A Blind Receiver for Digital Communications In Shallow Water - Waldhorst, Weber, Böhme (2000)   (Correct)

.... for fast and reliable underwater acoustic transmission of large amounts of data, e.g. in the fields of coastal zone monitoring and communication between submersibles, numerous research activities have focused on digital communication techniques in underwater acoustics during the past years [1] [2]. In connection with the limited bandwidth of the underwater communication channel, so called blind transmission techniques, which avoid the requirements of initial, periodically recurring or permanent training signals, have also become an issue of increasing interest. The EU MAST III project ....

....average over non overlapping blocks containing a fixed number of symbols. The estimate # n , being computed for each set of M signal samples is obtained from # n = 1 2# arg( c 1,n ) 4) Finally, the estimates # n need to be unwrapped, as their values are restricted to the basic interval [ 1 2 , 1 2 ] but parameter drifts exceeding this range must be tracked as well. Therefore, # n =# n 1 saw (# n # n 1 ) 5) is computed, where saw(x) denotes the sawtooth function with saw(x) x , for 1 2 # x 1 2 being periodically continued outside this interval. In order to ....

Daniel B. Kilfoyle and Arthur B. Baggeroer, "The state of the art in underwater acoustic telemetry", IEEE J. Oceanic Eng., vol. 25, no. 1, pp. 4--27, January 2000.


Underwater Acoustic Sensor Networks: Research Challenges - Ian Akyildiz Dario (2005)   (3 citations)  (Correct)

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D.B. Kilfoyle, A.B. Baggeroer, The state of the art in underwater acoustic telemetry, IEEE Journal of Oceanic Engineering 25 (1) (2000) 4--27.


Multichannel Detection for Wideband Underwater Acoustic.. - Milica Stojanovic Member   (Correct)

No context found.

D.Kilfoyle and A.Baggeroer, "The state of the art in underwater acoustic telemetry," IEEE J. Oceanic Eng., vol.25, pp.4-27, Jan. 2000.


Challenges: Building Scalable Mobile Underwater Wireless.. - Cui, Kong, Gerla, Zhou (2006)   (Correct)

No context found.

D. B. Kilfoyle and A. B. Baggeroer. The State of the Art in Underwater Acoustic Telemetry. IEEE Journal of Oceanic Engineering, OE-25(5):4--27, January 2000.


High Rate Acoustic Link for Underwater Video Transmission - Pelekanakis, Stojanovic..   (Correct)

No context found.

D.Kilfoyle and A.Baggeroer, "The state of the art in underwater acoustic telemetry," IEEE J. Oceanic Eng., vol. 25, pp. 4-27, Jan 2000.


Underwater Acoustic Sensor Networks: Research Challenges - Ian Akyildiz Dario (2005)   (3 citations)  (Correct)

No context found.

D.B. Kilfoyle, A.B. Baggeroer, The state of the art in underwater acoustic telemetry, IEEE Journal of Oceanic Engineering 25 (1) (2000) 4--27.


VBF: Vector-Based Forwarding Protocol for Underwater Sensor.. - Xie, Cui, Lao (2005)   (Correct)

No context found.

D. B. Kilfoyle and A. B. Baggeroer. The State of the Art in Underwater Acoustic Telemetry. IEEE Journal of Oceanic Engineering, OE-25(5):4--27, January 2000.


Challenges: Building Scalable and Distributed Underwater.. - Cui, Kong, Gerla, Zhou (2005)   (Correct)

No context found.

D. B. Kilfoyle and A. B. Baggeroer. The State of the Art in Underwater Acoustic Telemetry. IEEE Journal of Oceanic Engineering, OE-25(5):4--27, January 2000.


Building Underwater Ad-Hoc Networks and Sensor Networks.. - Kong, Cui, Wu, Gerla (2005)   (1 citation)  (Correct)

No context found.

D. B. Kilfoyle and A. B. Baggeroer. The State of the Art in Underwater Acoustic Telemetry. IEEE Journal of Oceanic Engineering, OE-25(1):4--27, January 2000.


Challenges: Building Scalable Mobile Underwater Wireless.. - Cui, Kong, Gerla, Zhou (2006)   (Correct)

No context found.

D. B. Kilfoyle and A. B. Baggeroer, "The State of the Art in Underwater Acoustic Telemetry," IEEE Journal of Oceanic Engineering, vol. OE-25, no. 5, pp. 4--27, January 2000.

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