الملخص

Manipulation requires not only reasoning about the external environment, but also about the robot's physical condition. A strategy may remain geometrically feasible while becoming physically unsuitable due to increased joint load or limited mobility, yet internal physical state is typically used only for low-level control. We propose body-grounded high-level replanning, which uses internal physical state to adapt manipulation strategies during execution. Body-state events trigger strategy replanning, and an LLM interprets the underlying joint-level state, recent execution statistics, and execution history to select a context-dependent alternative, while leaving the task objective and low-level controller unchanged. We evaluate the framework on a reaching task under controlled load and asymmetric mobility constraints in simulation and on a real robot. Our experiments show that body-grounded replanning maintains high task success while reducing physical effort and enabling more efficient strategy adaptation. Additional contact-rich manipulation experiments demonstrate the applicability of the same replanning interface beyond reaching. These results show that internal physical state can inform not only low-level control, but also high-level decisions about how a manipulation task should be performed.

الكلمات المفتاحية

الموضوع

بيانات النشر

المجلة
غير متاح
وصول مفتوح
وصول مفتوح أخضر

اقتبس هذه المقالة

APA 7

Saito, N., & Kera, H. (2026). Body-Grounded Replanning for Physically Adaptive Manipulation. https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation

MLA 9

Saito, Namiko, and Hiroshi Kera. "Body-Grounded Replanning for Physically Adaptive Manipulation." https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation.

شيكاغو (المؤلف–التاريخ)

Saito, Namiko, and Hiroshi Kera. 2026. "Body-Grounded Replanning for Physically Adaptive Manipulation." https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation.

هارفارد

Saito, N. and Kera, H. (2026) 'Body-Grounded Replanning for Physically Adaptive Manipulation', Available at: https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation.

فانكوفر

Saito N, Kera H. Body-Grounded Replanning for Physically Adaptive Manipulation. https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation

IEEE

N. Saito, and H. Kera, "Body-Grounded Replanning for Physically Adaptive Manipulation," https://omanscience.com/ar/articles/body-grounded-replanning-for-physically-adaptive-manipulation.