Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making

A novel performance metric to improve underwater digital acoustic communication, called Multipath Penalty (MPP), is proposed as an alternative to traditional signal-to-noise ratio (SNR) methods in the context of the Arctic Beaufort Sea. MPP and SNR are compared alongside a third performance metric,...

Disgrifiad llawn

Manylion Llyfryddiaeth
Prif Awdur: Howard, Bradli Anne
Awduron Eraill: Schmidt, Henrik
Fformat: Traethawd Ymchwil
Cyhoeddwyd: Massachusetts Institute of Technology 2022
Mynediad Ar-lein:https://hdl.handle.net/1721.1/140080
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author Howard, Bradli Anne
author2 Schmidt, Henrik
author_facet Schmidt, Henrik
Howard, Bradli Anne
author_sort Howard, Bradli Anne
collection MIT
description A novel performance metric to improve underwater digital acoustic communication, called Multipath Penalty (MPP), is proposed as an alternative to traditional signal-to-noise ratio (SNR) methods in the context of the Arctic Beaufort Sea. MPP and SNR are compared alongside a third performance metric, Minimum Achievable Error (MAE), which replicates the operation of a channel estimate-based decision feedback equalizer in an acoustic modem. The three metrics are then tested in a hardware-in-the-loop Virtual Ocean simulator for an autonomous undersea vehicle (AUV) communicating with a collaborator. Using field data of modem statistics obtained during ICEX20 and expanding data supplied by the simulator, calibration of the three metrics to modem packet success is evaluated, resulting in proposed recalibration for MAE. The AUV's ability to communicate when adaptively choosing its depth is analyzed above and below the Beaufort Lens, and settings for MPP's engineering variables are obtained. The results show MPP generally improves reception and demodulation of acoustic transmissions over SNR by approximately 5% within an operational range of 8 km, while achieving similar results to the more robust metric MAE. MPP is an improved utility for underwater digital acoustic communication in both marine autonomy and as a tactical decision aid.
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spelling mit-1721.1/1400802022-02-08T03:37:54Z Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making Howard, Bradli Anne Schmidt, Henrik Massachusetts Institute of Technology. Department of Mechanical Engineering Joint Program in Oceanography/Applied Ocean Science and Engineering A novel performance metric to improve underwater digital acoustic communication, called Multipath Penalty (MPP), is proposed as an alternative to traditional signal-to-noise ratio (SNR) methods in the context of the Arctic Beaufort Sea. MPP and SNR are compared alongside a third performance metric, Minimum Achievable Error (MAE), which replicates the operation of a channel estimate-based decision feedback equalizer in an acoustic modem. The three metrics are then tested in a hardware-in-the-loop Virtual Ocean simulator for an autonomous undersea vehicle (AUV) communicating with a collaborator. Using field data of modem statistics obtained during ICEX20 and expanding data supplied by the simulator, calibration of the three metrics to modem packet success is evaluated, resulting in proposed recalibration for MAE. The AUV's ability to communicate when adaptively choosing its depth is analyzed above and below the Beaufort Lens, and settings for MPP's engineering variables are obtained. The results show MPP generally improves reception and demodulation of acoustic transmissions over SNR by approximately 5% within an operational range of 8 km, while achieving similar results to the more robust metric MAE. MPP is an improved utility for underwater digital acoustic communication in both marine autonomy and as a tactical decision aid. S.M. 2022-02-07T15:22:53Z 2022-02-07T15:22:53Z 2021-09 2021-09-30T17:31:28.783Z Thesis https://hdl.handle.net/1721.1/140080 In Copyright - Educational Use Permitted Copyright retained by author(s) https://rightsstatements.org/page/InC-EDU/1.0/ application/pdf Massachusetts Institute of Technology
spellingShingle Howard, Bradli Anne
Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title_full Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title_fullStr Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title_full_unstemmed Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title_short Multi-path Penalty Metric in Underwater Acoustic Communication for Autonomy and Human Decision-making
title_sort multi path penalty metric in underwater acoustic communication for autonomy and human decision making
url https://hdl.handle.net/1721.1/140080
work_keys_str_mv AT howardbradlianne multipathpenaltymetricinunderwateracousticcommunicationforautonomyandhumandecisionmaking