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Performance evaluation and comparative study of main VDTN routing protocols under small- and large-scale scenarios

机译:小型和大型场景下主要VDTN路由协议的性能评估和比较研究

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This paper presents a performance evaluation through simulations and a comparative study of main routing protocols dedicated to Vehicular Delay-Tolerant Networks. The assessment is conducted under small and large-scale scenarios with realistic vehicle mobility patterns as defined in the TAPAS Cologne simulation scenario. Through the literature, several evaluations have been conducted on routing for Vehicular Networks, but with an abstraction or a simplification regarding the delay tolerant aspect. Furthermore, considered scenarios were relatively small and too idealistic compared to the real-world environment and its multiples challenges. Moreover, to the best of our knowledge, this is the first extensive study that compares, in the same realistic simulation environment, the main flag-carriers of various categories of VDTN routing protocols, namely Epidemic, Direct Delivery, Prophet and GeoSpray protocols. Simulation results reveal better performance for the geographical approach advocated by GeoSpray compared to the predictive one of Prophet, under all considered scenarios. Moreover, they highlight the possibility for a minimalist and naive protocol such as Direct Delivery to perform well, under specific network conditions, as when considering an anycast communication scheme. Finally, deeper analysis was undertaken on both GeoSpray and Prophet. The studies reveal the potentialities to increase the performances of GeoSpray to some extent and highlight the difficulties of adapting Prophet settings for optimal performance in realistic scenarios. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文通过仿真和对专用于车辆时延容忍网络的主要路由协议的比较研究,提出了一种性能评估。评估是根据TAPAS科隆模拟场景中定义的逼真的车辆机动性模式在小型和大型场景下进行的。通过文献,已经对车载网络的路由进行了一些评估,但是对延迟容忍方面进行了抽象或简化。此外,与现实环境及其多重挑战相比,考虑的场景相对较小且过于理想。而且,就我们所知,这是第一个广泛的研究,它在相同的现实模拟环境中比较了各种VDTN路由协议(即流行病,直接传递,先知和GeoSpray协议)的主要标志载波。在所有考虑的情况下,仿真结果均表明,与Prophet的预测方法相比,GeoSpray倡导的地理方法具有更好的性能。此外,它们还强调了诸如Direct Delivery之类的极简和天真协议在特定网络条件下(如考虑任播通信方案时)表现良好的可能性。最后,对GeoSpray和Prophet进行了更深入的分析。这些研究揭示了在一定程度上提高GeoSpray性能的潜力,并强调了调整Prophet设置以在实际场景中获得最佳性能的困难。 (C)2018 Elsevier B.V.保留所有权利。

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