Blockchain Tenant Security Cloud Compliance
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Solution Overview
Problem
In cloud computing environments, ensuring tenant security and compliance is challenging due to the lack of trust between security providers and consumers, leading to vulnerabilities and difficulties in maintaining secure and compliant data and infrastructure protection levels.
Innovation Solution
A blockchain-based system and method that extends blockchain technology to provide defined security levels by utilizing a decentralized peer-to-peer network with blockchain nodes acting as cloud security providers and requestors, enabling secure transactions and smart contracts to manage and enforce security levels without relying on trust between parties.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a centralized cloud computing model is used, then service delivery efficiency is improved, but trust and security between providers and consumers deteriorate
Solution Approach 1:
The patent introduces blockchain technology as a neutral intermediary layer between cloud service providers and consumers. The blockchain network acts as a mediator that records and verifies security compliance data, security level definitions, and transaction information in a decentralized manner, enabling trustless interactions while maintaining service delivery efficiency.
Solution Approach 2:
The patent segments the cloud computing ecosystem into distinct blockchain nodes representing different stakeholders (providers, consumers, auditors). Each node operates independently with defined roles and permissions, allowing parallel processing of security validations and service transactions, thus maintaining efficiency while enhancing security through distributed verification.
2Device complexity
If traditional security validation methods are used, then implementation simplicity is maintained, but security validation reliability deteriorates
Solution Approach 1:
The patent implements smart contracts that automatically execute security validation logic without requiring manual intervention. The blockchain network self-validates security compliance by comparing actual security levels against defined requirements, and automatically enforces compliance through programmed penalties or corrections, eliminating the need for complex manual security audits while significantly improving validation reliability.
3Device complexity
If manual security compliance monitoring is used, then system complexity is reduced, but monitoring precision and timeliness deteriorate
Solution Approach 1:
The patent implements continuous automated monitoring through blockchain-based smart contracts that continuously track security level definitions, compliance data, and transaction information. The system performs real-time validation and updates security compliance status without interruption, providing precise and timely monitoring of security conditions across the cloud environment.
Solution Approach 2:
The patent replaces manual security monitoring mechanisms with automated blockchain-based systems. Smart contracts automatically execute security validation logic, compare actual security levels against requirements, and record compliance status on the blockchain, eliminating the need for manual security audits while significantly improving monitoring precision and timeliness.
Data Source
AI summary
A blockchain-based method and system for providing tenant security and compliance in a cloud computing environment. Specifically, the method and system disclosed herein implement a marketplace solution which extends blockchain technology to the problem of providing defined security levels in the cloud computing environment. In adapting blockchain technology, the method and system disclosed herein provide a mechanism for guaranteeing tenant security without any implication of trust between security providers and security requestors or consumers.


