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BCFL logging: An approach to acquire and preserve admissible digital forensics evidence in cloud ecosystem

机译:BCFL日志记录:在云生态系统中获取和保存可允许的数字取证证据的方法

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Log files are the primary source of recording users, applications and protocols, activities in the cloud ecosystem. Cloud forensic investigators can use log evidence to ascertain when, why and how a cyber adversary or an insider compromised a system by establishing the crime scene and reconstructing how the incident occurred. However, digital evidence acquisition in a cloud ecosystem is complicated and proven difficult, even with modern forensic acquisition toolkit. The multi-tenancy, Ceo-location and Service-Level Agreement have added another layer of complexity in acquiring digital log evidence from a cloud ecosystem. In order to mitigate these complexities of evidence acquisition in the cloud ecosystem, we need a framework that can forensically maintain the trustworthiness and integrity of log evidence. In this paper, we design and implement a Blockchain Cloud Forensic Logging (BCFL) framework, using a Design Science Research Methodological (DSRM) approach. BCFL operates primarily in four stages: (1) Process transaction logs using Blockchain distributed ledger technology (DLT). (2) Use a Blockchain smart contract to maintain the integrity of logs and establish a clear chain of custody. (3) Validate all transaction logs. (4) Maintain transaction log immutability. BCFL will also enhance and strengthen compliance with the European Union (EU) General Data Protection Regulation (GDPR). The results from our single case study will demonstrate that BCFL will mitigate the challenges and complexities faced by digital forensics investigators in acquiring admissible digital evidence from the cloud ecosystem. Furthermore, an instantaneous performance monitoring of the proposed Blockchain cloud forensic logging framework was evaluated. BCFL will ensure trustworthiness, integrity, authenticity and non-repudiation of the log evidence in the cloud.
机译:日志文件是记录用户,应用程序和协议,云生态系统中的活动的主要源。云法医调查员可以使用日志证据来确定何时,为什么和网络对手或内部人如何通过建立犯罪现场并重建事件发生的情况来损害系统。然而,云生态系统中的数字证据收购是复杂的,并且困难,即使是现代法医习得工具包。多租赁,首席执行官位置和服务级别协议在获取来自云生态系统的数字日志证据时添加了另一层复杂性。为了减轻云生态系统中的证据收购的这些复杂性,我们需要一个框架,可以确定地保持日志证据的可信度和完整性。在本文中,我们使用设计科学研究方法(DSRM)方法设计并实施区块Cloud Foreensic Logging(BCFL)框架。 BCFL主要在四个阶段运行:(1)使用SlockChain分布式分类帐技术(DLT)的过程事务日志。 (2)使用区块链智能合同保持日志的完整性,并建立一个明确的监护链。 (3)验证所有事务日志。 (4)维护交易日志不变性。 BCFL还将加强和加强遵守欧盟(欧盟)一般数据保护条例(GDPR)。我们单一案例研究的结果将展示BCFL将减轻数字取证调查人员在从云生态系统获取可接受的数字证据中所面临的挑战和复杂性。此外,评估了所提出的区块云法证测井框架的瞬时性能监测。 BCFL将确保云中的日志证据的可靠性,完整性,真实性和不依赖性。

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