The objective of this study is to design and develop a secure mobile commerce framework that ensures the protection of sensitive payment information, such as credit card numbers, expiration dates, CVV, and transaction amounts, by utilizing AES encryption for data confidentiality. The framework aims to provide a robust mechanism for secure transaction processing through mobile cloud computing, enabling encrypted data transmission and ensuring that only authorized recipients can access and decrypt transaction details. Additionally, the system incorporates an admin authorization process to validate and authorize users, further enhancing the security and trustworthiness of mobile payment systems.
DESIGN & DEVELOPMENT OF SECURE MOBILE COMMERCE FRAMEWORK BASED ON MOBILE CLOUD COMPUTING
ABSTRACT:
The growing reliance on mobile commerce necessitates the development of secure frameworks to protect sensitive payment data. This paper presents a secure mobile commerce framework based on mobile cloud computing, focusing on securing user payment details such as credit card numbers, expiration dates, CVV, and transaction amounts. To ensure data confidentiality and integrity, the system employs AES (Advanced Encryption Standard) encryption for encrypting payment details before transmission. The encrypted data is then securely transmitted to the receiver, who receives an email containing the decrypted transaction details for validation. An admin-level authorization mechanism is incorporated to monitor and approve users, enhancing the framework's security by restricting access to authorized entities only. This multi-layered approach offers a robust solution for securing financial transactions in mobile commerce, mitigating risks associated with data breaches, and ensuring safe, efficient payment processing.
Keywords: mobile commerce, secure payment, AES encryption, payment details, mobile cloud computing, data encryption, CVV, credit card security, transaction authorization, admin authorization, data confidentiality, financial security, mobile payment security
NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

SOFTWARE FRONT END 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 : Django
β’ IDE/Workbench : VS Code
β’ Technology : Python 3.6+