基于速率的lambda-grid传输协议评价

Xinran Wu, A. Chien
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引用次数: 17

摘要

lambda网格是丰富的、地理上分布的计算和存储资源的互连集合。这种丰富的连接是通过专用的密集波分复用(DWDM)光路实现的。由于网络中心带宽充裕(DWDM链路较多),争用和共享瓶颈从网络核心转移到终端系统。在这样的网络中,传统的TCP不足以提供可接受的性能。我们确定了这种完全不同的网络的关键通信特征,为数据密集型应用程序引入了一种新的多点对点通信模式。我们评估了几种有前途的基于速率的数据传输协议(RBUDP, SABUL/UDT和GTP),用于在一系列通信模式(单流,多个并行流,收敛流和快速转换)下的lambda网格。我们的实验使用了一系列性能指标,包括持续吞吐量和损失率、协议间和协议内公平性、协议开销以及流转换的速率适应速度。结果提供了对这三种协议的功能的见解,以及对基于速率的协议的设计和实现的改进。
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Evaluation of rate-based transport protocols for lambda-grids
Lambda-grids are richly interconnected collections of plentiful, geographically-distributed computing and storage resources. This rich connectivity is enabled by dedicated dense wavelength division multiplexing (DWDM) optical paths. With abundant bandwidth in the center of the network (many DWDM links), contention and sharing bottlenecks move from the network core to end systems. In such networks, traditional TCP is insufficient to provide acceptable performance. We identify the key communication characteristics of this radically different network, introducing a new multipoint-to-point communication pattern for data-intensive application. We evaluate several promising rate-based data transport protocols (RBUDP, SABUL/UDT and GTP) for lambda-grids under a range of communication patterns (single stream, multiple parallel streams, converging streams, and rapid transitions). Our experiments use a range of performance metrics, including sustained throughput and loss rate, inter- and intra-protocol fairness, protocol overhead, and rate adaptation speed to flow transitions. The results provide insights into the capabilities of these three protocols and also for improvements in design and implementation of rate-based protocols.
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