Abstract

In today’s world, crowdsourcing is a highly rising paradigm where mass people are engaged in solving a problem. Though this system has a lot of advantages, yet people are not interested in working on this platform. Thus, we survey people to find out the constraints of this platform and the main reason behind their unwillingness. 59% of people think that security and privacy is the major challenge of a crowdsourcing platform. Therefore, we propose a blockchain-based crowdsourced system which can provide security and privacy to the user’s information. We also have used a smart contract to verify the task so that the users get the exact output that they have wanted. We implemented our system and compared the performance with the existing systems. Our proposed approach outperforms the current methods in terms of cost and properties.

Highlights

  • Crowdsourcing is a marketing platform where a large task is distributed into a collection of small pieces and providing those pieces into a large group of workers [1]

  • Compared to conventional systems that depend on crowdsourcing networks, the proposed scheme guarantees that transaction details of requesters and contributors are recorded in the blockchain

  • Ethereum facilitates smart contract functionality in such a way that any Ethereum wallet owner can implement their smart contract on the Ethereum network to benefit their specific business rules

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Summary

A Blockchain-based Crowdsourced Task Assessment Framework using Smart Contract

Abstract—In today’s world, crowdsourcing is a highly rising paradigm where mass people are engaged in solving a problem. Though this system has a lot of advantages, yet people are not interested in working on this platform. We survey people to find out the constraints of this platform and the main reason behind their unwillingness. 59% of people think that security and privacy is the major challenge of a crowdsourcing platform. We propose a blockchain-based crowdsourced system which can provide security and privacy to the user’s information. Our proposed approach outperforms the current methods in terms of cost and properties

INTRODUCTION
RELATED WORKS
MOTIVATION SCENARIO
SYSTEM OVERVIEW
Components of the System Model
Establishing Smart Contract
Add New Block after Task Completion
Submit Task Results
User Registration to the System
Task Request Placement
Task Request Arrival and Distribution
Contributor Selection
Smart Contract Implementation
Rating Point Computation
Addition of Transaction Block
Concusses in the Blockchain
Integrity
Security
Anonymity
Privacy
Efficiency
Fairness
Decentralization
Comparative Analysis of Property
EXPERIMENT RESULTS
Environment and Tools
Cost Analysis of the System
VIII. CONCLUSIONS AND FUTURE WORKS

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