Abstract
In the context of the public’s response to home-based care, the “Time Bank” care model has attracted more and more attention as an effective supplement to home-based care. Although there are cases of Time Bank implementation in China, it still has many problems such as extreme centralization, lack of credibility, and opaque and imperfect circulation of time currency. In response to this, this paper integrates blockchain technology based on the traditional time banking model and proposes a new home-based care mutual assistance framework driven by blockchain technology, which utilizes the distributed decentralization, collective maintenance, and data immutability of the blockchain. The characteristics of the blockchain provide credit guarantees by combining the community-based management agency and the channelization of the service network. Time-based transaction process service matching, smart currency scoring module. And use their respective financing agreements and other technologies to safely circulate, jointly establish a chain-wheel interoperability chain, and cooperate with various contract models to jointly establish various on-chain contracts. Experimental analysis shows that the new framework involved can realize secure encrypted storage and transmission of information, solve the problem of cross-regional storage and exchange, and provide a new feasible solution for home care.
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References
Jiang, Q.: Current situation and future development of institutional pensions in my country. Coop. Econ. Technol. (16), 3 (2021)
Boc’s “time bank” public welfare mutual aid platform to explore the development of time bank with Chinese characteristics. Chin. Civil Aff. (2), 1 (2022)
Chuangchuang, Luan, H., Yang, X., Guo, X., Lu, Z., Niu, B.: Overview of blockchain technology research. Comput. Sci. 48(S02), 9 (2021)
Cai, X., et al.: The principle of blockchain and its core technology. Chin. J. Comput. 44(1), 48 (2021)
Shen, M., Zhang, H.: Overview of blockchain technology research. Wirel. Internet Technol. 17(10), 3 (2020)
Liu, F., Chen, Y.: A review of blockchain technology research. J. Shandong Normal Univ. Nat. Sci. Ed. 35(3), 13 (2020)
Xiao, K., Wang, M., Tang, X., Jiang, T.: Public welfare time banking system based on blockchain technology. J. Comput. Appl. 39(7), 6 (2019)
Tao, S., Zhang, Y.: The mechanism and path of “time bank” mutual aid for the elderly: from the perspective of time and money, (2), 7 (2022)
Xia, Q., Dou, W., Dou, W., Liang, G., Zuo, C., Zhang, F.: Overview of blockchain consensus protocols (2021)
Zhou, Y., Fang, J., Jia, Y., Jia, L., Shi, W.: Consortium chain consensus algorithm based on PBFT. Comput. Sci. 48(11), 9 (2021)
Sun, Z., Zhang, X., Xiang, F., Chen, L.: Research progress of blockchain storage scalability. J. Softw. 32(1), 20 (2021)
Tetarave, S.K., Tripathy, S.: PJ-sec: secure node joining in mobile p2p networks. CCF Trans. Pervasive Comput. Interact. (4) (2020)
Wu, Y., Li, J.: The evolution process of blockchain P2P network protocol. Appl. Res. Comput. 36(10), 7 (2019)
Deng, Y., Ji-Tao, M.A., Hai-Hong, W.U., Liu, W., Zhang, R.B.: Analyse operation mechanism and management styles for the public service network of science and technology which is built under the principle of “innovation-driven”-take the joint construction and application of scientific instruments and equipments. China Soft Science (2011)
Liu, F., et al.: Blockchain cross-chain asset interaction protocol based on improved hash time lock. Comput. Sci. 49(1), 9 (2022)
Baccara, M., Lee, S.M., Yariv, L.: Optimal dynamic matching. CEPR Discussion Papers (2018)
Carrara, G.R., Burle, L.M., Medeiros, D.S.V., de Albuquerque, C.V.N., Mattos, D.M.F.: Consistency, availability, and partition tolerance in blockchain: a survey on the consensus mechanism over peer-to-peer networking. Ann. Telecommun. 75(2) (2020)
Liu, F., Yang, J., Qi, J.: Research on two-party elliptic curve digital signature algorithm of blockchain based on hash proof system. Inf. Netw. Secur
Wang, R., Tang, Y., Pei, X., Guo, S., Zhang, F.: Blockchain privacy protection scheme based on lightweight homomorphic encryption and zero-knowledge proof. Comput. Sci. 48(S02), 5 (2021)
Qian, W., Shao, Q., Zhu, Y., Kim, C.-C., Zhou, A.: Blockchain and trusted data management: problems and methods brief. J. Softw. 29(1), 10 (2018)
Liu, S., Liao, S., Yang, C., Fan, J.: Research on real world data sharing system based on blockchain. Inf. Secur. Res. 8(1), 6 (2022)
Wang, G., Ding, H.: Blockchain-based business collaboration data security sharing scheme. Inf. Secur. Res. 7(7), 9 (2021)
Liu, Y., Lang, X., Pei, S.: Encryption algorithm based on ECC and homomorphic encryption. Comput. Eng. Des. 41(5), 5 (2020)
Zhang, P., Li, Y.: A forward-secure elliptic curve digital signature scheme. Comput. Eng. Appl. 56(1), 6 (2020)
Xiao, S., Wang, X., Pan, F.: An elliptic curve digital signature algorithm based on modular inverse operation. Comput. Eng. Appl. (2020)
Zhang, X., Li, Q., Fu, F.: Confidentiality verification method of blockchain transaction amount based on digital commitment. Comput. Sci. 48(9), 6 (2021)
Chen, C., Long, X., Jiang, Z., Liu, Z., Meng, Q., Long, L.: Research progress on the application of time banking model in the field of elderly care. J. Nurs. Training 36(12), 4 (2021)
Li, C., Jiang, M.: Research on the optimization strategy of blockchain embedded “time bank”. Changbai Acad. J. (4), 7 (2021)
Acknowledgements
This work is supported by the Foundation of Jiangxi Educational Committee under Grant No. GJJ210338, the National Natural Science Foundation of China (NSFC) under Grant No. 61962026, the National Natural Science Key Foundation of China grant No. 62262030 and No. 62067003, the National Natural Science Foundation of China under Grant No.62002143 and the Natural Science Foundation of Jiangxi Province under Grant No. 20192ACBL21031.
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Huang, R. et al. (2023). A New Home-Based Pension Mutual Aid Framework Based on Blockchain. In: Cao, Y., Shao, X. (eds) Mobile Networks and Management. MONAMI 2022. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, vol 474. Springer, Cham. https://doi.org/10.1007/978-3-031-32443-7_3
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