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Shared Control between Human and Machine: Haptic Display of Automation during Manual Control of Vehicle Heading.

, and . HAPTICS, page 358-366. IEEE Computer Society, (2004)

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Shared Control between Human and Machine: Haptic Display of Automation during Manual Control of Vehicle Heading., and . HAPTICS, page 358-366. IEEE Computer Society, (2004)A Fundamental Linear Systems Conflict Between Performance and Passivity in Haptic Rendering., , and . IEEE Trans. Robotics, 27 (1): 75-88 (2011)Recovering haptic performance by relaxing passivity requirements., and . WHC, page 326-331. IEEE Computer Society, (2009)Sharing Control Between Humans and Automation Using Haptic Interface: Primary and Secondary Task Performance Benefits., and . Human Factors, 47 (3): 574-590 (2005)A Fundamental Tradeoff Between Performance and Sensitivity Within Haptic Rendering., , and . IEEE Trans. Robotics, 24 (3): 537-548 (2008)Plugfest 2009: Global interoperability in Telerobotics and telemedicine., , , , , , , , , and 9 other author(s). ICRA, page 1733-1738. IEEE, (2010)A Fundamental Tradeoff between Performance and Sensitivity within Haptic Rendering., , and . Robotics: Science and Systems, The MIT Press, (2007)Characterizing Teleoperator Behavior for Feedback Design and Performance Analysis., and . HAPTICS, page 273-280. IEEE Computer Society, (2008)Performance/Stability Robustness Tradeoffs Induced by the Two-Port Virtual Coupler., , and . HAPTICS, page 29. IEEE Computer Society, (2006)Defining performance tradeoffs for multi-degree-of-freedom bilateral teleoperators with LQG control., and . CDC, page 3542-3547. IEEE, (2010)