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Design of a crossbar VOQ real-time switch with clock-driven scheduling for a guaranteed delay bound

机译:具有时钟驱动调度功能的纵横式VOQ实时交换机的设计,可确保保证延迟范围

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摘要

Most commercial network switches are designed to achieve good average throughput and delay needed for Internet traffic, whereas hard real-time applications demand a bounded delay. Our real-time switch combines clearance-time-optimal switching with clock-based scheduling on a crossbar switching fabric. We use real-time virtual machine tasks to serve both periodic and aperiodic traffic, which simplifies analysis and provides isolation from other system operations. We can then show that any feasible traffic will be switched in two clock periods. This delay bound is enabled by introducing one-shot traffic, which can be constructed at the cost of a fixed delay of one clock period. We carry out simulation to compare our switch with the popular /SLIP crossbar switch scheduler. Our switch has a larger schedulability region, a bounded lower end-to-end switching delay, and a shorter clearance time which is the time required to serve every packet in the system.
机译:大多数商用网络交换机均设计为实现良好的平均吞吐量和Internet流量所需的延迟,而硬实时应用程序则需要有限的延迟。我们的实时交换机将交叉时间交换架构上的净空时间最佳交换与基于时钟的调度相结合。我们使用实时虚拟机任务来服务周期性和非周期性的流量,从而简化了分析并与其他系统操作隔离。然后,我们可以证明任何可行的流量都将在两个时钟周期内切换。通过引入单触发流量来启用此延迟范围,该流量可以以一个时钟周期的固定延迟为代价进行构建。我们进行仿真以将我们的交换机与流行的/ SLIP交叉开关调度程序进行比较。我们的交换机具有更大的可调度性区域,有限的端到端切换延迟以及更短的清除时间,即为系统中的每个数据包提供服务所需的时间。

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