IEEE Robotics & Automation Magazine - September 2018 - 38
[2] T. McGeer, "Passive dynamic walking," Int. J. Robotics Res., vol. 9,
no. 2, pp. 62-82, 1990.
[3] C. Hubicki, J. Grimes, M. Jones, D. Renjewski, A. Spröwitz, A. Abate,
and J. Hurst, "ATRIAS: Design and validation of a tether-free 3D-capable
spring-mass bipedal robot," Int. J. Robotics Res., vol. 35, no. 12, pp. 1497-
1521, 2016.
[4] M. Spong, "Underactuated mechanical systems," in Control Problems in Robotics and Automation, B. Siciliano and K. Valavanis, Eds.
Berlin: Springer-Verlag, 1998, pp. 135-150. doi: org/10.1007/BFb0015081.
[5] S. Rezazadeh, C. M. Hubicki, M. Jones, A. Peekema, J. Van Why, A.
Abate, and J. Hurst, "Spring-mass walking with ATRIAS in 3D: Robust
gait control spanning zero to 4.3 kph on a heavily underactuated
bipedal robot," in Proc. ASME Dynamic Systems Control Conf. (ASME/
DSCC 2015), 2015, pp. V001T04A003.
[6] M. Vukobratovic and B. Borovac, "Zero-moment point: Thirty five
years of its life," Int. J. Humanoid Robotics, vol. 1, no. 1, pp. 157-173,
2004.
[7] Y. Sakagami, R. Watanabe, C. Aoyama, S. Matsunaga, N. Higaki,
and K. Fujimura, "The intelligent ASIMO: System overview and inte-
gration," in Proc. IEEE/RSJ Int. Conf. Intelligent Robots Systems, Laus-
anne, Switzerland, 2002, pp. 2478-2483.
[8] I. W. Park, J. Y. Kim, J. Lee, and J. H. Oh, "Online free walking trajec-
tory generation for biped humanoid robot KHR-3(HUBO)," in Proc.
IEEE Int. Conf. Robotics Automation, 2006, pp. 1231-1236. doi: 10.1109/
ROBOT. 2006.1641877.
[9] S. Kajita, F. Kanehiro, K. Kaneko, K. Fujiwara, K. Harada, K. Yokoi,
and H. Hirukawa, "Biped walking pattern generation by using preview
control of zero-moment point," in Proc. IEEE Int. Conf. Robotics Automation (ICRA '03), 2003, pp. 1620-1626.
[10] S. Kuindersma, R. Deits, M. Fallon, A. Valenzuela, H. Dai, F. Per-
menter, T. Koolen, P. Marion, and R. Tedrake, "Optimization-based loco-
motion planning, estimation, and control design for the Atlas humanoid
robot," Autonomous Robots, vol. 40, no. 3, pp. 429-455, 2015. doi:
10.1007/s10514-015-9479-3.
[11] R. Blickhan, "The spring mass model for running and hopping," J.
Biomech., vol. 22, no. 11-12, pp. 1217-1227, 1989.
[12] J. Schmitt and J. Clark, "Modeling posture-dependent leg actuation
in sagittal plane locomotion," Bioinspiration Biomimetics, vol. 4, no. 4,
Nov. 2009. doi: 10.1088/1748-3182/4/4/046005.
[13] M. Ernst, H. Geyer, and R. Blickhan, "Extension and customization
of self-stability control in compliant legged systems," Bioinspiration
Biomimetics, vol. 7, no. 4, Dec. 2012. doi: 10.1088/1748-3182/7/4/046002.
[14] M. Ahmadi and M. Buehler, "Controlled passive dynamic running
experiments with the ARL-Monopod II," IEEE Trans. Robot., vol. 22,
no. 5, pp. 974-986, 2006.
[15] S. H. Collins, A. Ruina, R. Tedrake, and M. Wisse, "Efficient biped-
al robots based on passive-dynamic walkers," Science, vol. 307, no. 5712,
pp. 1082-1085, 2005. doi: 10.1126/science.1107799.
[16] P. A. Bhounsule, J. Cortell, A. Grewal, B. Hendriksen, J. G. Daniël
Karssen, C. Paul, and A. Ruina, "Low-bandwidth reflex-based control for
lower power walking: 65 km on a single battery charge," Int. J. Robotics
Res., vol. 33, no. 10, pp. 1305-1321, 2014. doi: 10.1177/0278364914527485.
[17] K. Sreenath, H-W. Park, I. Poulakakis, and J. W. Grizzle, "A compli-
ant hybrid zero dynamics controller for stable, efficient and fast bipedal
walking on MABEL," Int. J. Robotics Res., vol. 30, no. 9, pp. 1170-1193,
2011.
38
*
IEEE ROBOTICS & AUTOMATION MAGAZINE
*
september 2018
[18] A. Hereid, S. Kolathaya, M. S. Jones, J. Van Why, J. W. Hurst, and A.
D. Ames, "Dynamic multi-domain bipedal walking with ATRIAS
through SLIP based human-inspired control," in Hybrid Systems: Computation and Control, M. Fráänzle and J. Lygeros, Eds. Berlin: ACM, 2014,
pp. 263-272.
[19] A. E. Martin, D. C. Post, and J. P. Schmiedeler, "Design and experi-
mental implementation of a hybrid zero dynamics-based controller for
planar bipeds with curved feet," Int. J. Robotics Res., vol. 33, no. 7, pp.
988-1005, 2014. doi: 10.1177/0278364914522141.
[20] M. Johnson, B. Shrewsbury, S. Bertrand, T. Wu, D. Duran, M.
Floyd, P. Abeles, D. Stephen, N. Mertins, A. Lesman, J. Carff, W. Rifen-
burgh, P. Kaveti, W. Straatman, J. Smith, M. Griffioen, B. Layton, T. de
Boer, T. Koolen, P. Neuhaus, and J. Pratt, "Team IHMC's lessons learned
from the DARPA Robotics Challenge trials," J. Field Robotics, vol. 32,
no. 2, pp. 192-208, Mar. 2015. doi: 10.1002/rob.21571.
[21] T. Erez, K. Lowrey, Y. Tassa, and V. Kumar, "An integrated system
for real-time model predictive control of humanoid robots," in IEEE/
RAS Int. Conf. Humanoid Robots, 2013, pp. 292-299.
[22] K. Kaneko, F. Kanehiro, M. Morisawa, K. Miura, S. Nakaoka, and S.
Kajita, "Cybernetic human HRP-4C," in Proc. 9th IEEE-RAS Int.
Conf. Humanoid Robots, Dec. 2009, pp. 7-14. doi: 10.1109/ICHR. 2009
.5379537.
[23] A. M. Abate, "Preserving the planar dynamics of a compliant
bipedal robot with a yaw-stabilizing foot design," H.B.S. thesis, Mech.
Eng., Oregon State Univ., Corvallis, OR, 2014.
[24] R. Blickhan, A. Seyfarth, H. Geyer, S. Grimmer, H. Wagner, and
M. Günther, "Intelligence by mechanics," Philos. Trans. Royal Soc. A:
Math., Phys. Eng. Sci., vol. 365, no. 1850, pp. 199-220, Jan. 2007. doi:
10.1098/rsta.2006.1911.
[25] A. Abate, R. L. Hatton, and J. Hurst, "Passive-dynamic leg design
for agile robots," in Proc. IEEE Int. Conf. Robotics Automation (ICRA),
2015, pp. 4519-4524.
[26] M. A. Daley and A. A. Biewener, "Running over rough terrain
reveals limb control for intrinsic stability," in Proc. Nat. Acad. Sci. USA,
vol. 103, no. 42, pp. 15,681-15,686, Oct. 2006. doi: 10.1073/pnas.060147
3103.
[27] Dynamic Robotics Laboratory. (2015, June 2). ATRIAS robot: Runs to
the end zone. [Online]. Available: https://youtu.be/KeSkAPYAJc4
[28] S. Feng, E. Whitman, X. Xinjilefu, and C. G. Atkeson, "Optimi-
zation-based full body control for the DARPA Robotics Challenge," J.
Field Robotics, vol. 32, no. 2, pp. 293-312, Mar. 2015. doi: 10.1002/
rob.21559.
[29] C. T. Moritz and C. T. Farley, "Passive dynamics change leg
mechanics for an unexpected surface during human hopping," J. Appl.
Physiol., vol. 97, no. 4, pp. 1313-1322, Oct. 2004. doi: 10.1152/japplphysiol
.00393.2004.
[30] H. R. Vejdani, A. Wu, H. Geyer, and J. Hurst, "Touch-down angle
control for spring-mass walking," in IEEE Int. Conf. Robotics Automation (ICRA), 2015, pp, 5101-5106.
[31] H. W. Park, K. Sreenath, A. Ramezani, and J. W. Grizzle, "Switching
control design for accommodating large step-down disturbances in
bipedal robot walking," in IEEE/RSJ Int. Conf. Robotics Automation
(ICRA), May 2012, pp. 45-50. doi: 10.1109/ICRA.2012.6225056.
[32] R. J. Full and D. E. Koditschek, "Templates and anchors: Neurome-
chanical hypotheses of legged locomotion on land," J. Experiment.
Biol., vol. 202, no. 23, pp. 3325-3332, Dec. 1999.
http://youtu.be/KeSkAPYAJc4
IEEE Robotics & Automation Magazine - September 2018
Table of Contents for the Digital Edition of IEEE Robotics & Automation Magazine - September 2018
Contents
IEEE Robotics & Automation Magazine - September 2018 - Cover1
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