Apples, Oranges, and Testbeds

K. Langendoen
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引用次数: 22

Abstract

Research into wireless sensor networks is rapidly moving from simulations to realistic testbeds. The widely varying characteristics (e.g., radio hardware, #nodes, and topology) of various testbeds raise concerns about the validity of results across different testbeds. This paper presents empirical data of an experiment involving one application (Surge), two routing protocols (multihop and mintroute), and two testbeds (MoteLab and MistLab). The outcome is somewhat mixed. When increasing the data rate, congestion causes goodput to fall off in a similar fashion on both testbeds, which is good, but only when ignoring mintroute ill-behaving for low rates on MoteLab, which is bad. Accounting for differences in communication hardware is necessary, but even then results should be taken with a grain of salt. This certainly holds for TOSSIM simulation results, since we found that they generally do not match those of physical testbeds
苹果、橘子和试验台
对无线传感器网络的研究正迅速从模拟转向现实的测试平台。各种试验台的广泛变化的特性(例如,无线电硬件、节点和拓扑结构)引起了对跨不同试验台结果有效性的关注。本文介绍了一种应用程序(Surge)、两种路由协议(multihop和mintroute)和两个测试平台(MoteLab和MistLab)的实验数据。结果有些喜忧参半。当提高数据速率时,拥塞会导致两个测试平台上的good - put以类似的方式下降,这很好,但只有在忽略MoteLab上低速率下的微小不良行为时,这才是不好的。考虑通信硬件的差异是必要的,但即使这样,结果也应该有所保留。这当然适用于TOSSIM模拟结果,因为我们发现它们通常与物理测试平台的结果不匹配
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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