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Khan, Moh Shahid
Mandava, Ravi Kumar
2026-06-08T08:11:20Z
2026-06-08T08:11:20Z
2023
1785-8860hu_HU
http://hdl.handle.net/20.500.14044/38808
The current research work aims to generate the dynamically balanced gait for the 16-DOF biped robot while crossing the ditch by using the concept of the zero moment point (ZMP). Initially, forward kinematics was established to obtain the position and orientation of the biped robot while crossing the ditch. The various joint angles of the biped robot were estimated by deriving the inverse kinematics. Further, the dynamics of the biped robot was obtained using the Lagrange-Euler formulation. A cubic polynomial equation was assigned for the smooth motion of foot and wrist trajectories in the sagittal plane and hip trajectory in the horizontal plane. The obtained cubic polynomial trajectory for the foot was compared with the second-order and fifth-order polynomial trajectories in terms of dynamic balance margin (DBM). A simulation study was conducted to verify the dynamically balanced gait while crossing the ditch. Finally, the generated gait angles were tested on a real 16-DOF biped robot. It has been found that the generated gait is more dynamically balanced while crossing the ditch.hu_HU
dc.formatPDFhu_HU
enhu_HU
Design of Dynamically Balanced Gait for the Biped Robot While Crossing the Ditchhu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
Budapesthu_HU
Óbudai Egyetemhu_HU
Műszaki tudományok - multidiszciplináris műszaki tudományokhu_HU
Biped robothu_HU
gait generationhu_HU
ditch crossinghu_HU
DBMhu_HU
ZMPhu_HU
Lagrange-Euler formulatihu_HU
Tudományos cikkhu_HU
Acta Polytechnica Hungaricahu_HU
local.tempfieldCollectionsFolyóiratcikkekhu_HU
10.12700/APH.20.7.2023.7.15
Kiadói változathu_HU
20 p.hu_HU
7. sz.hu_HU
20. évf.hu_HU
2023hu_HU
Óbudai Egyetemhu_HU


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