CLCP -移动自组织网络的分布式跨层提交协议

S. Obermeier, S. Böttcher, Dominik Kleine
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引用次数: 10

摘要

移动自组织网络中的事务处理必须考虑节点断开、消息丢失和网络分区等网络问题。我们提出了一种称为CLCP的分布式跨层原子提交协议,它使用多个协调器并利用确认消息来承载信息。我们通过使用两种移动模型(即Attraction Point和Manhattan Geometry)来评估移动自组织网络中的事务处理,并将CLCP与原子提交协议2PC和Paxos commit进行比较,这两种协议都有3个版本实现,即没有确认、有中继路由和有最近的前向进度路由。我们的模拟环境的特殊之处在于使用了准单元-磁盘模型,它假设非二进制消息接收概率,比理论中经常使用的经典单元-磁盘模型更好地捕捉现实世界的行为。使用准单位盘模型,我们的评估显示了以下结果。CLCP和“不带确认消息的2PC”比其他协议的能耗要低得多,而且对于每个移动模型,CLCP能够提交比所有其他原子提交协议多得多的分布式事务。
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CLCP – A Distributed Cross-Layer Commit Protocol for Mobile Ad Hoc Networks
Transaction processing in mobile ad hoc networks must take network problems like node disconnection, message loss, and network partitioning into consideration. We present a distributed cross-layer atomic commit protocol called CLCP that uses multiple coordinators and makes use of acknowledgement messages to piggyback information. We evaluated transaction processing in mobile ad hoc networks by using two mobility models (i.e. Attraction Point and Manhattan Geometry), and compared CLCP with both atomic commit protocols, 2PC and Paxos Commit, each implemented in 3 versions, i.e. without acknowledgements, with relay routing, and with nearest forward progress routing. Special to our simulation environment is the use of the quasi-unit-disc model, which assumes a non-binary message reception probability that captures real-world behavior much better than the classical unit-disc-model, often used in theory. Using the quasi-unit-disc model, our evaluation shows the following results. CLCP and "2PC without acknowledement messages" have a significantly lower energy consumption than the other protocols, and CLCP is able to commit significantly more distributed transactions than all the other atomic commit protocols for each of the mobility models.
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