This project develops Edasvic, a storage verification scheme for Industrial Internet Platforms (IIP) using cloud storage, optimizing computational efficiency, data integrity, and security through polynomial commitment and dynamic data handling.
Industrial Internet platforms (IIP) can provide many intelligent services based on the industrial big data stored in clouds. However, the vulnerability of cloud storage can cause data corruption, demanding verifying its integrity. Unfortunately, existing cloud storage verification approaches cannot be directly applied to IIP, since they pose heavy computational burdens on the edge side. In this work, we propose an efficient and dynamic storage verification scheme Edasvic for cloud storage in the IIP. We adopt the polynomial commitment to build an efficient homomorphic authenticator, and further design an authenticator accumulator, which can be efficiently generated with limited computational overheads. In addition, we integrate the dynamic information into the authenticator accumulator to support data dynamics. The security of Edasvic is analyzed under the random oracle model. We conduct extensive experiments to evaluate the performance of Edasvic and compare it with the state-of-the-art approaches. Experimental results affirm that Edasvic is superior to existing solutions in terms of computational efficiency.
Index Termsβ Industrial internet platform, cloud, efficient verification, data dynamics.
NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Hard Disk - 160GB
Key Board - Standard Windows Keyboard
Mouse - Two or Three Button Mouse
Monitor - SVGA
RAM - 8GB
S/W CONFIGURATION:
β’ Operating System : Windows 7/8/10
β’ Server side Script : HTML, CSS, Bootstrap & JS
β’ Programming Language : Python
β’ Libraries : Flask, Pandas, Mysql.connector, Os, Smtplib, Numpy
β’ IDE/Workbench : PyCharm
β’ Technology : Python 3.6+
β’ Server Deployment : Xampp Server