IOTA-Based Mobile Crowd Sensing: Detection of Fake Sensing Using Logit-Boosted Machine Learning Algorithms

Author:

Hameed Mazhar1ORCID,Yang Fengbao1ORCID,Ghafoor Muhammad Imran2ORCID,Jaskani Fawwad Hassan3ORCID,Islam Umar4,Fayaz Muhammad5ORCID,Mehmood Gulzar4ORCID

Affiliation:

1. School of Information and Communication Engineering, North University of China, China

2. Department of Electrical Engineering, Superior University Lahore, Pakistan

3. Department of Computer Systems Engineering, Islamia University of Bahawalpur, Pakistan

4. Department of Computer Science, IQRA National University, Swat Campus, Pakistan

5. Department of Computer Science, University of Central Asia, Naryn, Kyrgyzstan

Abstract

In the Internet of Things (IoT) era, the mobile crowd sensing system (MCS) has become increasingly important. The Internet of Things Auto (IOTA) has evolved rapidly in practically every technology field over the last decade. IOTA-based mobile crowd sensing technology is being developed in this study using machine learning to detect and prevent mobile users from engaging in fake sensing activities. It has been determined through testing and evaluation that our method is effective for both quality estimation and incentive allocation. Using the IOTA Bottleneck dataset, multiple performance metrics were used to demonstrate how well logit-boosted algorithms perform. After applying logit-boosted algorithms on the dataset for the classification, Logi-XGB scored 95.7 percent accuracy, while Logi-GBC scored 90.8 percent accuracy. As a result of this, Logi-ABC had an accuracy rate of 89%. Logi-CBC, on the other hand, got the highest accuracy of 99.8%. Logi-LGBM and Logi-HGBC both scored 91.37 percent accuracy, which is identical. On the given dataset, our Logi-CBC algorithm outperforms earlier Logit-boosted algorithms in terms of accuracy. Using the new IoTA-Botnet 2020 dataset, a new proposed methodology is tested. In comparison to prior Logit-boosted algorithms, the new model Logi-CBC has a highest detection accuracy of 99.8%.

Funder

North University of China

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

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