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STUDY OF IN-VEHICLE ROUTE GUIDANCE SYSTEMS FOR IMPROVEMENT OF RIGHT-SIDE DRIVERS IN THE JAPANESE TRAFFIC SYSTEM

机译:日本交通系统中用于改善右侧驾驶员的车载路线导航系统的研究

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摘要

A country can adopt one of two standards for traffic flow - cars may travel on the left or right side of the road. When drivers who are accustomed to driving on the right side of the road drive on the left side, and vice versa, the mental workload is likely increased due to the driver's unfamiliarity with a new language, the position of the driver's seat, different driving directions, and other factors that differ from those of their home country. One method of doing this is to make sure that the in-vehicle route guidance information (RGI) is not overly complicated - thereby assisting drivers in improving their safety. Consequently, the aim of this study was to facilitate mobility and improve safety for natural right-side drivers driving temporarily in left-side traffic. In this study, driver behavior and workload - given various types of RGI - were evaluated in a driving simulator with a variety of prescribable test conditions. This research was composed of two experiments. In the first, various types of in-vehicle route guidance systems were tested and evaluated in terms of their characteristics and associated driver behaviors (while driving). In the second experiment, systemic factors and effectiveness were evaluated by two combined systems, arrow and map-type information, based on the results of the first experiment. In light of both experiments, the various types of route guidance systems were discussed in terms of their results. A navigation system was proposed to alleviate some of the secondary tasks such as route selection.
机译:一个国家可以采用两种交通标准之一-汽车可以在道路的左侧或右侧行驶。当习惯于在左侧驾驶在道路右侧的驾驶员(反之亦然)时,由于驾驶员不熟悉新的语言,驾驶员座椅的位置,不同的驾驶方向,可能会增加精神工作量以及其他与祖国不同的因素。一种方法是确保车内路线引导信息(RGI)不会过于复杂-从而帮助驾驶员提高安全性。因此,本研究的目的是为临时在左侧交通中行驶的自然右侧驾驶员提供便利,并提高他们的安全性。在这项研究中,在各种模拟测试条件下,在驾驶模拟器中评估了给定各种RGI类型的驾驶员行为和工作量。这项研究由两个实验组成。首先,对各种类型的车载路线引导系统进行了测试和评估,包括其特性和相关的驾驶员行为(驾驶时)。在第二个实验中,基于第一个实验的结果,通过两个组合的系统(箭头和地图类型信息)评估了系统因素和有效性。根据这两个实验,讨论了各种类型的路径引导系统的结果。提出了一种导航系统来减轻一些次要任务,例如路线选择。

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