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Research Article

Sampled visual feedback pose estimation and regulation based on camera frame rates

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 297-309 | Received 27 Jan 2023, Accepted 07 Aug 2023, Published online: 20 Aug 2023

References

  • Ma Y, Soatto S, Košecká J.  An invitation to 3-D vision: from images to geometric models. New York (NY): Springer; 2004.
  • Hutchinson S, Hager GD, Corke PI. A tutorial on visual servo control. IEEE Trans Robot Autom. 1996 Oct;12(5):651–670. doi: 10.1109/70.538972
  • Chaumette F, Hutchinson S. Visual servo control, part I: basic approaches. IEEE Robot Autom Mag. 2006 Dec;13(4):82–90. doi: 10.1109/MRA.2006.250573
  • Chaumette F, Hutchinson S. Visual servo control, part II: advanced approaches. IEEE Robot Autom Mag. 2007 Mar;14(1):109–118. doi: 10.1109/MRA.2007.339609
  • AlBeladi A, Ripperger E, Hutchinson S, et al. Hybrid eye-in-hand/eye-to-hand image based visual servoing for soft continuum arms. IEEE Robot Autom Lett. 2022 Oct;7(4):11298–11305. doi: 10.1109/LRA.2022.3194690
  • Niu G, Yang Q, Gao Y, et al. Vision-based autonomous landing for unmanned aerial and ground vehicles cooperative systems. IEEE Robot Autom Lett. 2022 Jul;7(3):6234–6241. doi: 10.1109/LRA.2021.3101882
  • Zhou S, Miao Z, Zhao H, et al. Vision-based control of an industrial vehicle in unstructured environments. IEEE Trans Control Syst Technol. 2022 Mar;30(2):598–610. doi: 10.1109/TCST.2021.3073003
  • Guo D, Jin X, Shao D, et al. Image-based regulation of mobile robots without pose measurements. IEEE Control Syst Lett. 2022 Jan;6:2156–2161. doi: 10.1109/LCSYS.2021.3139288
  • Rotithor G, Trombetta D, Kamalapurkar R, et al. Full- and reduced-order observers for image-based depth estimation using concurrent learning. IEEE Trans Control Syst Technol. 2021 Nov;29(6):2647–2653. doi: 10.1109/TCST.2020.3036369
  • Bell ZI, Deptula P, Doucette EA, et al. Simultaneous estimation of Euclidean distances to a stationary object's features and the Euclidean trajectory of a monocular camera. IEEE Trans Autom Control. 2021 Sep;66(9):4252–4258. doi: 10.1109/TAC.2020.3035597
  • Li Y, Wang H, Xie Y, et al. Adaptive image-space regulation for robotic systems. IEEE Trans Control Syst Technol. 2021 Mar;29(2):850–857. doi: 10.1109/TCST.87
  • Keenan P, Janabi-Sharifi F, Assa A. Vision-based robotic traversal of textureless smooth surfaces. IEEE Trans Robot. 2020 Aug;36(4):1287–1306. doi: 10.1109/TRO.8860
  • Fujita M, Kawai H, Spong MW. Passivity-based dynamic visual feedback control for three dimensional target tracking: stability and L2-gain performance analysis. IEEE Trans Control Syst Technol. 2007 Jan;15(1):40–52. doi: 10.1109/TCST.2006.883236
  • Kawai H, Murao T, Fujita M. Passivity-based visual motion observer with panoramic camera for pose control. J Int Robot Syst. 2011 May;64(3–4):561–583. doi: 10.1007/s10846-011-9557-5
  • Ibuki T, Hatanaka T, Fujita M. Visual feedback pose synchronization with a generalized camera model. In: 50th IEEE Conference on Decision and Control and European Control Conference. Orlando, IEEE; 2011. p. 4999–5004.
  • Ibuki T, Hatanaka T, Fujita M. Passivity-based visual feedback pose regulation integrating a target motion model in three dimensions. SICE J Control Meas Syst Integr. 2013 Sep;6(5):322–330. doi: 10.9746/jcmsi.6.322
  • Yamauchi J, Saito M, Omainska M, et al. Cooperative visual pursuit control with learning of target motion via distributed Gaussian processes under varying visibility. SICE J Control Meas Syst Integr. 2022 Dec;15(2):228–240. doi: 10.1080/18824889.2022.2155454
  • Tabuada P. Event-triggered real-time scheduling of stabilizing control tasks. IEEE Trans Autom Control. 2007 Sep;52(9):1680–1685. doi: 10.1109/TAC.2007.904277
  • Bemporad A, Heemels M, Johansson M. Networked control systems. London: Springer; 2010.
  • Garcia E, Antsaklis PJ. Model-based event-triggered control for systems with quantization and time-varying network delays. IEEE Trans Autom Control. 2013 Feb;58(2):422–434. doi: 10.1109/TAC.2012.2211411
  • Ibuki T, Namba Y, Hatanaka T, et al. Passivity-based discrete visual motion observer taking account of camera frame rates. In: 52nd IEEE Conference on Decision and Control. Florence, IEEE; 2013. p. 7660–7665.
  • Ibuki T, Walter JR, Hatanaka T, et al. Frame rate-based discrete visual feedback pose regulation: a passivity approach. IFAC Proc Volumes. 2014;47(3):11171–11176. doi: 10.3182/20140824-6-ZA-1003.02768
  • Luenberger DG. An introduction to observers. IEEE Trans Autom Control. 1971 Dec;AC–16(6):596–602. doi: 10.1109/TAC.1971.1099826
  • Khalil HK. Nonlinear systems. 3rd ed. Upper Saddle River (NJ): Prentice Hall; 2002.