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Creative testbeds for VANET research: A new methodology

机译:Vanet Research创意测试用品:一种新方法

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The ever-increasing processing power that can today support large scale and detailed simulations increased the depth of the research carried out on protocols and apps developed for single hop and multi-hop Vehicular Ad Hoc Network (VANET) environments. It is now possible, for example, to verify the effectiveness of peer-to-peer one-hop file exchange protocols between vehicles, while taking into account the effects that buildings have on point-to-point transmissions at street intersections, or also verify how a high density of vehicles can impact the transfer of multimedia information through multiple hops between passengers involved into an online game. However, what has not been possible so far, for the obvious reason that no highly dense VANETs in reality exists, is to effectively test any type of application or communication protocol in a real setting, especially for the scenarios concerned with multi-hop communications. But this may change, with the introduction of a creative approach to VANET research: we will here describe how it is possible to experiment with applications and protocols in scenarios that are close to reality, by simply using a few real vehicle resources. As an example of how this can be done, we will provide preliminary results from a set of experiments on a vehicular highway accident warning system, results that would have not been observable in reality without the adoption of our creative methodology.
机译:随着越来越多的加工能力,即今天可以支持大规模和详细仿真,增加了对为单跳和多跳车辆临时网络(VANET)环境开发的协议和应用程序进行的研究深度。例如,现在可以验证车辆之间的对等单跳文件交换协议的有效性,同时考虑到建筑物在街道交叉口的点对点传输的效果,或者还验证如何通过涉及在线游戏的乘客之间的多次跳跃来影响多媒体信息的转移。然而,到目前为止,对于现实中没有高度密集的Vanets的明显原因,是不可能的,是为了有效地测试真实环境中的任何类型的应用程序或通信协议,尤其是对于与多跳通通信相关的情景。但这可能会改变,随着vanet研究的创意方法作为如何完成这一目标的例子,我们将提供一套关于车辆公路事故警告系统的一组实验的初步结果,而不会通过我们的创造性方法而在现实中没有观察到的结果。

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