This book examines the signal processing perspective in haptic teleoperation systems. This text covers the topics of prediction, estimation, architecture, data compression and error correction that can be applied to haptic teleoperation systems. The authors begin with an overview of haptic teleoperation systems, then look at a Bayesian approach to haptic teleoperation systems. They move onto a discussion of haptic data compression, haptic data digitization and forward error correction.
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This book examines the signal processing perspective in haptic teleoperation systems. The authors begin with an overview of haptic teleoperation systems, then look at a Bayesian approach to haptic teleoperation systems. They move onto a discussion of haptic data compression, haptic data digitization and forward error correction.
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Introduction.- A Bayesian Approach to Haptic Teleoperation Systems.- Stability of Haptic Teleoperation System Based on the Bayesian Approach.- A Layered Protocol Architecture for Haptic Teleoperation.- Haptic Data Compression.- Haptic Data Digitization and Forward Error Correction.- Conclusion and Future Work.- References.- Appendices.
Les mer
This book examines the signal processing perspective in haptic teleoperation systems. This text covers the topics of prediction, estimation, architecture, data compression, and error correction that can be applied to haptic teleoperation systems. The authors begin with an overview of haptic teleoperation systems, then look at a Bayesian approach to haptic teleoperation systems. They move onto a discussion of haptic data compression, haptic data digitization and forward error correction. ·         Presents haptic data prediction/estimation methods that compensate for unreliable networks ·         Discusses haptic data compression that reduces haptic data size over limited network bandwidth and haptic data error correction that compensate for packet loss problem ·         Provides signal processing techniques used with existing control architectures
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Presents haptic data prediction/estimation methods that compensate for unreliable networks Discusses haptic data compression that reduces haptic data size over limited network bandwidth and haptic data error correction that compensate for packet loss problem Provides signal processing techniques used with existing control architectures Includes supplementary material: sn.pub/extras
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Produktdetaljer

ISBN
9783319383187
Publisert
2016-10-17
Utgiver
Vendor
Springer International Publishing AG
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet

Om bidragsyterne

Jae-young Lee is a Senior Research Associate Electronics and Telecommunication Research Institute (ETRI)
Shahram Payandeh is a Professor at Simon Fraser University.