面向最小流量代价和最小响应延迟:一种新的非结构化P2P网络动态查询协议

Chen Tian, Hongbo Jiang, Xue Liu, Wenyu Liu, Yi Wang
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引用次数: 6

摘要

控制泛洪算法广泛应用于非结构化网络。扩展环(ER)实现了较低的响应延迟,但其流量成本巨大;动态查询(DQ)以其在流量控制中的理想行为而闻名,但它以不理想的延迟性能为代价实现了较低的搜索成本;增强型动态查询(DQ+)也可以减少搜索延迟,但很难确定一个通用的最优参数集。本文提出了一种新的算法——选择性动态查询(SDQ)。与以前笨拙地处理浮动TTL值的工作不同,SDQ正确地选择整数TTL值和一组邻居来缩小下一个查询的范围。我们的实验表明,SDQ提供了比其他算法更细粒度的控制:它的延迟接近众所周知的最小延迟;同时其流量成本也接近于最小值。据我们所知,这是第一个能够在响应延迟和流量成本方面实现最佳性能的工作。此外,我们的实验还表明,SDQ在各种网络拓扑中都能很好地工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Minimum Traffic Cost and Minimum Response Latency: A Novel Dynamic Query Protocol in Unstructured P2P Networks
Controlled-flooding algorithms are widely used in unstructured networks. Expanding ring (ER) achieves low response delay, while its traffic cost is huge; dynamic querying (DQ) is known for its desirable behavior in traffic control, but it achieves lower search cost at the price of an undesirable latency performance; Enhanced dynamic querying (DQ+) can reduce the search latency too, while it is hard to determine a general optimum parameters set. In this paper, a novel algorithm named selective dynamic query (SDQ) is proposed. Unlike previous works that awkwardly processing floating TTL values, SDQ properly select an integer TTL value and a set of neighbors to narrow the scope of next query. Our experiments demonstrate that SDQ provides finer-grained control than other algorithms: its latency is close to the well-known minimum one via ER; in the mean time its traffic cost also close to the minimum. To our best knowledge, this is the first work capable of achieving best performance in terms of both response latency and traffic cost. In addition, our experiments also demonstrate that SDQ works well in various network topologies.
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