Secure Room-Sharing Decentralized App Development on Ethereum Block Chain Using Smart Contracts

Main Article Content

Hasnain Raza
Reqad Ali
Jawaid Iqbal
Muhammad Awais

Abstract

The purpose of this research is to analyze whether Blockchain technology can affect the share-economy. Apart from that, blockchain technology has been innovating the whole of the industries and so the academics are discovering the possibilities and starting to incorporate them in order to provide additional tech possibilities. The sharing economic system is the system which enables to share asset among the one person to the other person. It has seen the remarkable growth in the last few years, Uber, Careem, Airbnb, Zostel, Hostel World are some companies to mention which have fueled this growth. Yet, the majority of the transactions through the sharing economy system are facilitated by a centralized infrastructure executing an intermediary role that might be vulnerable to issues of hacking and data breach and such operations come at a high cost and expending more effort in keeping the system active is also a factor worth mentioning. A different method which is free of control centers such as the peer-to-peer sharing and smart service model which is being implemented in the Hospitality industry can overcome those obstacles. Through the use of a blockchain-backed payment system based on an accommodation-sharing structure, the research will develop a prototype of the proposed system in the form of a DApp on the Ethereum blockchain. The aim of these studies and research is to inform the public about the revolution that is blockchain and its benefits for trade, technology, business, and daily life.

Article Details

How to Cite
Raza, H., Ali, R., Iqbal , J., & Awais, M. (2024). Secure Room-Sharing Decentralized App Development on Ethereum Block Chain Using Smart Contracts. Journal of Informatics and Web Engineering, 3(2), 146–158. https://doi.org/10.33093/jiwe.2024.3.2.11
Section
Regular issue

References

F. Hawlitschek, B. Notheisen, T. Teubner (2018). The Limits of Trust-Free Systems: A Literature Review on Blockchain Technology and Trust in The Sharing Economy. Journal of Electronic Commerce Research and Applications, vol 29, pp. 50-63.

T. AlSkaif, J. L. Crespo-Vazquez, M. Sekuloski, G. van Leeuwen & J. P. S. Catalão (2022). Blockchain-Based Fully Peer-to-Peer Energy Trading Strategies for Residential Energy Systems. In IEEE Transactions on Industrial Informatics, vol. 18, no. 1, pp. 231-241, IEEE.

C. Komalavalli, D. Saxena, & C. Laroiya, (2021). Overview of Blockchain Technology Concepts. pp. 349-371. https://www.researchgate.net/publication/339591823.

T. Chen et al. (2018). Understanding Ethereum via Graph Analysis. IEEE INFOCOM 2018 - IEEE Conference on Computer Communications, Honolulu, HI, USA, 2018, pp. 1484-1492, IEEE.

G. A. Oliva, A. E. Hassan, & Z. M. Jiang (2020). An Exploratory Study of Smart Contracts in The Ethereum Blockchain Platform. Empirical Software Engineering, vol.25, pp.1864-1904.

G. Wood (2014). Ethereum: A Secure Decentralized Generalized Transaction Ledger. Ethereum Project Yellow Paper, 151, pp.1-32.

W. Kaidong, Y. Ma, G. Huang & X. Liu(2019). A First Look at Blockchain-based Decentralized Applications. Software: Practice and Experience, vol.51, no.10, pp. 2033-2050.

S. A. Renu, & B. G. Banik, (2021). Implementation of A Secure Ride-Sharing System Dapp Using Smart Contract. International Journal of Safety and Security Engineering. vol.11, no.2. pp.167-173.

S.E. Chang, & C. Chang (2018). Application of Blockchain Technology to Smart City Service: A Case Of Ridesharing. IEEE International Conference on Internet of Things (iThings) and IEEE Green Computing and Communications (GreenCom) and IEEE Cyber, Physical and Social Computing (CPSCom) and IEEE Smart Data (SmartData), Halifax, NS, Canada, pp.664671.

J. Ren, F. Xia, X. Chen, J. Liu, M. Hou, A. Shehzad, & N. Sultanova (2021). Matching Algorithms: Fundamentals, Applications and Challenges. IEEE Transactions on Emerging Topics in Computational Intelligence, vol. 5, no. 3, pp. 332-350, IEEE.

M. Manduhu, & M. W. Jones (2019). A Work Efficient Parallel Algorithm for Exact Euclidean Distance Transform. IEEE Transactions on Image Processing, vol. 28, no. 11, pp. 5322-5335, IEEE.

H. Yu, W. Ye, Y. Feng, H. Bao & G. Zhang (2020). Learning Bipartite Graph Matching for Robust Visual Localization. IEEE International Symposium on Mixed and Augmented Reality (ISMAR), Porto de Galinhas, Brazil, 2020, pp. 146-155, IEEE.

S. N. Khan, F. Loukil, C. G. Guegan, E. Benkhelifa, & A. B. Hani (2021). Blockchain smart contracts: Applications, challenges, and future trends. Peer-to-peer Networking and Applications, vol.14,pp. 2901-2925.

S. S. Kushwaha, S. Joshi, D. Singh, & H. N. Lee (2022). Systematic review of security vulnerabilities in ethereum blockchain smart contract. IEEE Access, vol.10, pp. 6605-6621, IEEE.

P. K. R. Maddikunta, Q. V. Pham, D. C. Nguyen, T. Huynh, T. Aouedi, O. Yanderi (2022). Incentive Techniques for The Internet of Things: A Survey. Journal of Network and Computer Applications, 206, pp.103464.

S. Mathur, A. Kalla, G. Gür, M. K. Bohra, & M. Liyanage (2023). A Survey on Role of Blockchain for IoT: Applications and Technical Aspects. Computer Networks, 227, pp.109726.

T. R. Xuan, & S. Ness (2023). Integration of Blockchain and AI: Exploring Application in the Digital Business. Journal of Engineering Research and Reports, vol.25 no.8, pp. 20-39.

K. Saini, A. Tyagi, & A. Antal (2023). The Blockchain-Empowered Application: DApp. In AI, IoT, and Blockchain Breakthroughs in E-Governance, pp. 49-61, IGI Global.

P. Zheng, Z. Jiang, J. Wu and Z. Zheng (2023). Blockchain-Based Decentralized Application: A Survey. in IEEE Open Journal of the Computer Society, vol. 4, pp. 121-133, IEEE.

K. John, L. Kogan, & F. Saleh, (2023). Smart contracts and decentralized finance. Annual Review of Financial Economics, vol.15, pp. 523-542.

V. Charles, A. Emrouznejad, & T. Gherman(2023). A Critical Analysis of The Integration of Blockchain and Artificial Intelligence for Supply Chain. Annals of Operations Research, vol.327 no. 1, pp. 7-47.

P. Bharathi, G. Annam, J. B. Kandi, V. K. Duggana, & T. Anjali (2021). Secure File Storage Using Hybrid Cryptography. In 2021 6th International Conference on Communication and Electronics Systems (ICCES), pp. 1-6, IEEE.

A. Ammar, A. Koubaa, W. Boulila, B. Benjdira, & Y. Alhabashi (2023). A Multi-Stage Deep-Learning-Based Vehicle and License Plate Recognition System with Real-Time Edge Inference. Sensors, vol.23, no.4, pp. 2120.