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Modular Simulation-Based Physical and Emotional Assessment of Ambient Intelligence in Traffic

机译:基于模块化仿真的交通环境智能物理和情感评估

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摘要

In this letter, we detail a modular approach for measuring the secondary physical and emotional effects of ambient intelligence (AmI) technology in traffic. Using the case of merges on to a highway, we assess the results of a system that advises the driver to change early to a lane on the left to create space for merging cars downstream (tested using a cellular automata simulation). The indirect impact of the system downstream, namely how the remaining lane changes from the merge lane to the innermost lane proceed, is then evaluated using a time-discrete, space-continuous microscopic traffic simulation tool. This yields detailed results concerning driver interactions that can also be used to derive an estimate of driver anger in the situation. We have used real geographic, traffic and psychological data to test the system, and different models are used to accomplish various tasks. The approach yields (surprisingly) negative results concerning the indirect emotional impact of this AmI intervention which may be due to the nature of the lane changing model used and the chosen parameters. We argue that such an approach is also applicable to similar types of systems, where different data and model types are suited to different scenario elements.
机译:在这封信中,我们详细介绍了一种模块化方法,用于测量交通中环境智能(AmI)技术的次要物理和情感影响。以合并到高速公路上的情况为例,我们评估了一个系统的结果,该系统建议驾驶员尽早更改到左侧的车道,以创建用于合并下游汽车的空间(使用元胞自动机模拟测试)。然后,使用时间离散,空间连续的微观交通模拟工具评估下游系统的间接影响,即剩余车道如何从合并车道更改为最内车道。这产生了有关驾驶员交互作用的详细结果,这些结果也可用于得出该情况下驾驶员愤怒的估计。我们使用了真实的地理,交通和心理数据来测试系统,并且使用不同的模型来完成各种任务。该方法产生(令人惊讶地)有关此AmI干预的间接情感影响的负面结果,这可能归因于所使用的车道变换模型的性质和所选参数。我们认为,这种方法也适用于相似类型的系统,其中不同的数据和模型类型适用于不同的场景元素。

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