首页> 外文会议>Reliable Distributed Systems, 1996. Proceedings., 15th Symposium on >Specialized N-modular redundant processors in large-scale distributed systems
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Specialized N-modular redundant processors in large-scale distributed systems

机译:大型分布式系统中的专用N模块冗余处理器

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Computers are being used to achieve increasingly sophisticated control for large and complex systems. Many of these systems require a large shared state-space or database. Thus, handling real-time concurrent accesses to a shared database is an essential feature for modern fault-tolerant systems. Many fault-tolerant systems have been implemented for uniformly tolerating various types of failures, such as MAFT (Multicomputer Architecture for Fault Tolerance), FTP (Fault-Tolerant Processor), FTPP (Fault-Tolerant Parallel Processors) and Delta-4. However, most of these either lack the notion of a shared state-space or do not efficiently support parallel tasks that concurrently access a shared state-space. We use a processor-specialization approach to increase the effectiveness of replication and, consequently, achieve cost-effective fault tolerance in such systems. The SNMR (specialized N-modular redundancy) protocol has been developed based on these concepts. Compared to many existing Byzantine-resilient systems, the SNMR approach incurs less overhead and can be easily parameterized to fit various fault models.
机译:使用计算机来实现对大型和复杂系统的日益复杂的控制。这些系统中的许多系统都需要大型共享状态空间或数据库。因此,处理对共享数据库的实时并发访问是现代容错系统的基本功能。已经实现了许多容错系统来统一容忍各种类型的故障,例如MAFT(容错多计算机体系结构),FTP(容错处理器),FTPP(容错并行处理器)和Delta-4。但是,其中大多数都缺少共享状态空间的概念,或者不能有效地支持并行访问共享状态空间的并行任务。我们使用处理器专业化方法来提高复制的效率,并因此在此类系统中实现具有成本效益的容错能力。基于这些概念已经开发了SNMR(专用N模块化冗余)协议。与许多现有的拜占庭弹性系统相比,SNMR方法产生的开销更少,并且可以轻松地进行参数设置以适合各种故障模型。

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