Title
An enhanced security mechanism through blockchain for E-polling/counting process using IoT devices
Abstract
One of the biggest challenges in political mayhem is visible during the election process where no stone is kept unturned in order to gain the power. Further, due to poll violence and waiting in the long queues to cast their votes, numbers of common citizens avoid the voting process completely in order to evade the chaos. In order to reduce these issues or to increase the voting rate, number of smart based or IoT enabled voting applications has been projected by various authors. However, IoT devices can be easily compromised or hacked by the experts (intruders) in order to gain their own access. Therefore, to ensure an enhanced secure and transparent polling process, Blockchain plays a vital role in ensuring the legit votes and their counting without their manipulation in any way. It is also needed in today’s times where the world is available to people in their IoT or smart devices to also give them the opportunity to register their votes hassle free via their smart devices without having to worry about the system getting hacked. Therefore, in this paper, the proposed layout will be based on an enhanced security through Blockchain in E-voting application using IoT devices where the user will create an account with proper verification done via voter id and other biometric methods on a smart device. Every transaction done via this account which in this case will be registering vote will be validated by a miner. The proposed Blockchain mechanism for E-polling using IoT devices is again validated and verified through several parameters such as response time, resource utilization and request processed.
Year
DOI
Venue
2020
10.1007/s11276-019-02112-5
Wireless Networks
Keywords
DocType
Volume
IoT devices, Blockchain, E-voting/polling, Blockchain voting, Voting threats
Journal
26
Issue
ISSN
Citations 
4
1022-0038
0
PageRank 
References 
Authors
0.34
0
3
Name
Order
Citations
PageRank
R. Krishnamurthy100.34
Geetanjali Rathee2329.47
Naveen Jaglan393.21