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On the Design of Perturbation-Resilient Atomic Commit Protocols for Mobile Transactions

机译:移动交易的摄动弹性原子提交协议的设计

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Distributed mobile transactions utilize commit protocols to achieve atomicity and consistent decisions. This is challenging, as mobile environments are typically characterized by frequent perturbations such as network disconnections and node failures. On one hand environmental constraints on mobile participants and wireless links may increase the resource blocking time of fixed participants. On the other hand frequent node and link failures complicate the design of atomic commit protocols by increasing both the transaction abort rate and resource blocking time. Hence, the deployment of classical commit protocols (such as two-phase commit) does not reasonably extend to distributed infrastructure-based mobile environments driving the need for perturbation-resilient commit protocols. In this article, we comprehensively consider and classify the perturbations of the wireless infrastructure-based mobile environment according to their impact on the outcome of commit protocols and on the resource blocking times. For each identified perturbation class a commit solution is provided. Consolidating these subsolutions, we develop a family of fault-tolerant atomic commit protocols that are tunable to meet the desired perturbation needs and provide minimized resource blocking times and optimized transaction commit rates. The framework is also evaluated using simulations and an actual testbed deployment.
机译:分布式移动交易利用提交协议来实现原子性和一致的决定。这是具有挑战性的,因为移动环境通常以频繁的干扰为特征,例如网络断开连接和节点故障。一方面,对移动参与者和无线链路的环境限制可能会增加固定参与者的资源阻塞时间。另一方面,频繁的节点和链接故障会通过增加事务中止率和资源阻塞时间来使原子提交协议的设计复杂化。因此,传统提交协议(例如两阶段提交)的部署无法合理地扩展到基于分布式基础架构的移动环境,从而推动了对具有抗灾能力的提交协议的需求。在本文中,我们根据基于无线基础架构的移动环境对提交协议的结果和资源阻塞时间的影响,综合考虑并对其进行分类。对于每个识别出的扰动类,提供了一个提交解决方案。整合这些子解决方案,我们开发了一系列的容错原子提交协议,这些协议可调整以满足所需的扰动需求,并提供最少的资源阻塞时间和优化的事务提交率。还使用模拟和实际的测试平台部署对框架进行了评估。

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