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Evaluating schematic route maps in wayfinding tasks for in-car navigation

机译:评估车载导航中的WASFINDING任务中的原理图路由映射

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Today's navigation systems use topographic maps to communicate route information. Being general-purpose maps, topographic maps lack optimal support for the specific task of route reading and navigation. In the public transportation domain, research demonstrated that topographic maps do not support planning of routes as good as schematic maps. Our current paper applies this idea to the domain of in-car navigation. Schematic maps emphasize functional aspects of geography and direction information by highlighting information relevant to navigation actions and orientation. However, there is a lack of systematic studies researching the usability of schematic cartography in wayfinding tasks. This article evaluates schematic route maps, created with an algorithm developed in our previous work, regarding user interaction, navigation performance, and spatial memorability. We compare these schematic maps with correspondent non-schematic ones in two different tasks: prospective and situated (driving simulator) route reading. The schematic map and the corresponding non-schematic map are identical in terms of their elements and topology; they vary only in their geometric shape: on the schematic maps, features are highly generalized, following schematic simplification rules for clarity. The experimental data shows that participants using the schematic route maps require fewer map interactions to complete the tasks, orientation information is more visible and leads to more accurate spatial knowledge acquisition. This result contributes to a better understanding of schematic route visualizations' benefits to support users in wayfinding and orientation tasks.
机译:今天的导航系统使用地形图来传达路径信息。作为通用地图,地形图缺乏对路由读取和导航的特定任务的最佳支持。在公共交通领域,研究表明,地形图不支持规划良好的路由和原理图映射。我们目前的论文将此想法应用于汽车导航领域。通过突出与导航行动和方向相关的信息,示意图映射强调了地理和方向信息的功能方面。然而,缺乏系统的研究,研究了示意图在WINFINDING任务中的可用性。本文评估了在我们以前的工作中开发的算法创建的原理图路由映射,关于用户交互,导航性能和空间难忘。我们将这些示意图与两种不同任务中的通用非原理图中的示意图进行了比较:预期和位置(驾驶模拟器)路由读数。示意图和相应的非原理图地图在其元素和拓扑方面是相同的;它们仅在其几何形状中变化:在原理图地图上,特征是高度广泛的,以便清楚起见。实验数据表明,参与者使用原理图路由映射需要更少的地图交互来完成任务,方向信息更加可见,并导致更准确的空间知识获取。这一结果有助于更好地了解原理图路由可视化对支持用户的益处和方向任务的益处。

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