الملخص

Although aerial-legged robots offer combined agility and efficiency, controlling high-speed hopping under complex hybrid dynamics is challenging. Reinforcement Learning (RL) is promising but prone to energy-inefficient "reward hacking". We propose a Dynamics-Informed RL framework for a monopedal hopping quadcopter. By embedding a target Specific Energy into the reward, we constrain the optimization to a physically viable energy manifold, ensuring stable hopping behaviour. By rewarding the phase-consistent behavior, it can encourage bio-inspired stance-phase impulse. Furthermore, penalizing the electro-mechanical power waste induces the motors generate an efficient impulse. This enables the policy to inject energy strictly during spring restitution without heuristic state machines. MuJoCo simulations validate robust height regulation and forward velocity tracking up to 2.0 m/s despite severe attitude-contact coupling. Ultimately, our approach yields a highly agile hopping gait, reducing energy consumption by 82% and 73% compared to hovering baselines and inefficiency baseline, respectively.

الكلمات المفتاحية

بيانات النشر

المجلة
غير متاح
وصول مفتوح
وصول مفتوح أخضر

اقتبس هذه المقالة

APA 7

Chen, R., Zhang, Q., Zhong, Z., Yun, Z., Or, Y., & Liu, M. (2026). Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter. https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter

MLA 9

Chen, Ruigang, et al. "Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter." https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter.

شيكاغو (المؤلف–التاريخ)

Chen, Ruigang, Qi Zhang, Zhicheng Zhong, Zhuorui Yun, Yizhar Or, and Mingyi Liu. 2026. "Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter." https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter.

هارفارد

Chen, R., Zhang, Q., Zhong, Z., Yun, Z., Or, Y. and Liu, M. (2026) 'Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter', Available at: https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter.

فانكوفر

Chen R, Zhang Q, Zhong Z, Yun Z, Or Y, Liu M. Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter. https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter

IEEE

R. Chen, Q. Zhang, Z. Zhong, Z. Yun, Y. Or, and M. Liu, "Dynamics-Informed Reinforcement Learning for Agile and Energy-Efficient Locomotion of a Monopedal Hopping Quadcopter," https://omanscience.com/ar/articles/dynamics-informed-reinforcement-learning-for-agile-and-energy-efficient-locomotion-of-a-monopedal-hopping-quadcopter.