The Internet of Things and artificial intelligence have developed rapidly in recent decades, and intelligent robots have been used in various fields of production and life. There are many requirements for the functions, performance and intelligence of smart robots. Many researchers are committed to how intelligent robots can learn more efficiently and develop new functions. How to obtain the learning data while protecting the privacy of users and how to record the learning process are two major problems faced by researchers. This article proposes a smart robot training data acquisition and learning process recording system based on blockchain to ensure that the training information of robot is kept credible and to provide users with privacy protection.
Goodrich, M.A. and Schultz, A.C. (2008) Human-Robot Interaction: A Survey. Now Publishers Inc., Hanover. https://doi.org/10.1561/9781601980939
[3]
Chew, Y.J., Wong, K.S. and Ooi, S.Y. (2017) Privacy Protection in Machine Learning: With the State of the Art for Private Decision Tree. Security and Authentication: Perspectives, Management and Challenges. Nova Science Publishers, Inc., Hanover, 13-39.
[4]
Bitcoin, N.S. (2019) A Peer-to-Peer Electronic Cash System. Manubot.
[5]
Bitcoin, L.J. (2013) Theory, Practice and Effect. Studies of International Finance, 12, 14-25.
[6]
Bonneau, J., Miller, A., Clark, J., et al. (2015) Sok: Research Perspectives and Challenges for Bitcoin and Cryptocurrencies. 2015 IEEE Symposium on Security and Privacy, San Jose, 17-21 May 2015, 104-121. https://doi.org/10.1109/SP.2015.14
[7]
Bishop, G. (2017) Illinois Begins Pilot Project to Put Birth Certificates on Digital ledger Technology.
[8]
Browne, R. (2017) IBM Partners with Nestle, Unilever and Other Food Giants to Trace Food Contamination with Blockchain. CNBC, 22 August 2017.
[9]
Lakhani, K.R. and Iansiti, M. (2017) The Truth about Blockchain. Harvard Business Review, 95, 119-127.
[10]
Simonsen, S. (2017) Reasons the UN Is Jumping on the Blockchain Bandwagon.
[11]
Wang, K., Liu, M., Jiang, X., et al. (2019) A Novel Vehicle Blockchain Model Based on Hyperledger Fabric for Vehicle Supply Chain Management. International Conference on Blockchain and Trustworthy Systems, Springer, Singapore, 732-739.
https://doi.org/10.1007/978-981-15-2777-7_59
[12]
Androulaki, E., Barger, A., Bortnikov, V., et al. (2018) Hyperledger Fabric: A Distributed Operating System For Permissioned Blockchains. Proceedings of the Thirteenth EuroSys Conference, Porto, April 2018, 1-15.
https://doi.org/10.1145/3190508.3190538
[13]
Cao, T., Yu, J., Decouchant, J., et al. (2020) Exploring the Monero Peer-to-Peer Network. Financial Cryptography and Data Security 2020, Sabah, 10-14 February 2020, 578-594. https://doi.org/10.1007/978-3-030-51280-4_31
[14]
Allingham, M. (2002) Choice Theory: A Very Short Introduction. OUP, Oxford.
https://doi.org/10.1093/actrade/9780192803030.001.0001