Two-Level Reinforcement Learning Framework for Self-sustained Personal Robots
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-8715-3_30
Reference16 articles.
1. Cao, J., Harrold, D., Fan, Z., Morstyn, T., Healey, D., Li, K.: Deep reinforcement learning-based energy storage arbitrage with accurate lithium-ion battery degradation model. IEEE Trans. Smart Grid 11(5), 4513–4521 (2020)
2. Castro-González, A., Amirabdollahian, F., Polani, D., Malfaz, M., Salichs, M.A.: Robot self-preservation and adaptation to user preferences in game play, a preliminary study. In: International Conference on Robotics and Biomimetics, pp. 2491–2498 (2011)
3. Chaoui, H., Gualous, H., Boulon, L., Kelouwani, S.: Deep reinforcement learning energy management system for multiple battery based electric vehicles. In: 2018 IEEE Vehicle Power and Propulsion Conference (VPPC), pp. 1–6. IEEE (2018)
4. Chellal, A.A., Lima, J., Gonçalves, J., Megnafi, H.: Battery management system for mobile robots based on an extended Kalman filter approach. In: 2021 29th Mediterranean Conference on Control and Automation, pp. 1131–1136. IEEE (2021)
5. Deshmukh, A., Aylett, R.: Socially constrained management of power resources for social mobile robots. In: International Conference on Human-Robot Interaction, pp. 119–120 (2012)
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