Submodular Optimization via Reinforcement Learning for Active Control of Sensor Networks
Author:
Affiliation:
1. Sarcos Group LC,Salt Lake City,UT,84108
2. BAE Systems FAST Labs™,Burlington,MA,01803
3. AFRL/RI,Rome,NY,13441
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9843190/9843194/09843713.pdf?arnumber=9843713
Reference10 articles.
1. Upstream fusion of multiple sensing modalities using machine learning and topological analysis: An initial exploration
2. Long-range dismount activity classification: LODAC;garagic;Proceedings of the SPIE 9079,2014
3. ESCAPE Data Collection for Multi-Modal Data Fusion Research
4. Mastering the game of go without human knowledge;silver;Nature,2017
5. Human-level control through deep reinforcement learning;mnih;Nature,2015
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