Scheduled Perception for Energy-Efficient Path Following

被引:0
作者
Ondruska, Peter
Gurau, Corina
Marchegiani, Letizia
Tong, Chi Hay
Posner, Ingmar
机构
来源
2015 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA) | 2015年
基金
英国工程与自然科学研究理事会;
关键词
VISUAL TEACH; MOBILE; REPEAT;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper explores the idea of reducing a robot's energy consumption while following a trajectory by turning off the main localisation subsystem and switching to a lower-powered, less accurate odometry source at appropriate times. This applies to scenarios where the robot is permitted to deviate from the original trajectory, which allows for energy savings. Sensor scheduling is formulated as a probabilistic belief planning problem. Two algorithms are presented which generate feasible perception schedules: the first is based upon a simple heuristic; the second leverages dynamic programming to obtain optimal plans. Both simulations and real-world experiments on a planetary rover prototype demonstrate over 50% savings in perception-related energy, which translates into a 12% reduction in total energy consumption.
引用
收藏
页码:4799 / 4806
页数:8
相关论文
共 50 条
[31]   An energy-efficient distributed computation offloading algorithm for ground-air cooperative networks [J].
Shao, Yanling ;
Xu, Hairui ;
Liu, Liming ;
Dong, Wenyong ;
Shan, Pingping ;
Guo, Junying ;
Xu, Wenxuan .
VEHICULAR COMMUNICATIONS, 2025, 52
[32]   Energy-efficient indoor search by swarms of simulated flying robots without global information [J].
Stirling, Timothy ;
Wischmann, Steffen ;
Floreano, Dario .
SWARM INTELLIGENCE, 2010, 4 (02) :117-143
[33]   Energy-Efficient Edge Computing Service Provisioning for Vehicular Networks: A Consensus ADMM Approach [J].
Zhou, Zhenyu ;
Feng, Junhao ;
Chang, Zheng ;
Shen, Xuemin .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2019, 68 (05) :5087-5099
[34]   Energy-Efficient Multi-UAV-Enabled Multiaccess Edge Computing Incorporating NOMA [J].
Zhang, Xiaochen ;
Zhang, Jiao ;
Xiong, Jun ;
Zhou, Li ;
Wei, Jibo .
IEEE INTERNET OF THINGS JOURNAL, 2020, 7 (06) :5613-5627
[35]   Energy-efficient routing in low power and lossy networks with concurrent overlapping RPL instances [J].
Jaisooraj, J. ;
Madhu Kumar, S. D. .
TRANSACTIONS ON EMERGING TELECOMMUNICATIONS TECHNOLOGIES, 2022, 33 (11)
[36]   Considering Slip-Track for Energy-Efficient Paths of Skid-Steer Rovers [J].
Effati, Meysam ;
Fiset, Jean-Sebastien ;
Skonieczny, Krzysztof .
JOURNAL OF INTELLIGENT & ROBOTIC SYSTEMS, 2020, 100 (01) :335-348
[37]   Approximation-based energy-efficient cyber-secured image classification framework [J].
Rahman, M. A. ;
Tunny, Salma Sultana ;
Kayes, A. S. M. ;
Cheng, Peng ;
Huq, Aminul ;
Rana, M. S. ;
Islam, Md. Rashidul ;
Tusher, Animesh Sarkar .
SIGNAL PROCESSING-IMAGE COMMUNICATION, 2025, 133
[38]   Energy-Efficient Torque Distribution Optimization for an Omnidirectional Mobile Robot with Powered Caster Wheels [J].
Jia, Wenji ;
Yang, Guilin ;
Wang, Chongchong ;
Zhang, Chi ;
Chen, Chinyin ;
Fang, Zaojun .
ENERGIES, 2019, 12 (23)
[39]   EFFECT: Energy-efficient Fog Computing Framework for Real-time Video Processing [J].
Zhang, Xiaojie ;
Pal, Amitangshu ;
Debroy, Saptarshi .
21ST IEEE/ACM INTERNATIONAL SYMPOSIUM ON CLUSTER, CLOUD AND INTERNET COMPUTING (CCGRID 2021), 2021, :493-503
[40]   Energy-Efficient Task Offloading in Wireless-Powered MEC: A Dynamic and Cooperative Approach [J].
He, Huaiwen ;
Zhou, Chenghao ;
Huang, Feng ;
Shen, Hong ;
Li, Shuangjuan .
MATHEMATICS, 2024, 12 (15)