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ADVICE: Decision Support for Complex Geospatial Decision Making Tasks

机译:建议:决策支持复杂的地理空间决策任务

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How can complex decisions, featuring multiple data sources and conflicting constraints, be supported by computer interfaces? We take a human factors approach to the problem by focusing on meeting users' cognitive decision making needs and addressing their perceptual challenges. An analysis of the historical trajectory of geospatial decision support reveals several issues and gaps. The configurable data overlay systems ubiquitous in weather forecasting and military command and control, that pass for decision support systems, require more and more mental effort of users with increases in the number and complexity of data sources. We lay out the design of a decision support system called ADVICE as a module that augments geospatial data overlay systems that allows users to reason about the impact of data. ADVICE possesses several task-centered features that apply the science of cognitive decision making to its interface. ADVICE allows users to build an integrated impact visualization that represents an appropriately weighted geospatial objective function for the decision at hand. Additional features provide the ability to compare the utility of different geospatial locations and regions, and intelligently explore the impacts of constraints. The system is also designed to meet the contextual control needs of users. That is, upfront user setup done in time-relaxed planning is handsomely repaid in execution, when time-pressured re-planning may be required. Although developed for geospatial decisions, the concepts are widely applicable to other types of decisions with multiple conflicting constraints.
机译:计算机接口支持复杂的决策,具有多个数据源和冲突的约束,可以支持计算机界面吗?通过重点关注满足用户的认知决策需求并解决其感知挑战,我们对问题的影响方法。对地理空间决策支持历史轨迹的分析揭示了几个问题和差距。用于决策支持系统的天气预报和军事指挥和控制中的可配置数据覆盖系统,用于决策支持系统,要求用户的数量和复杂性的越来越多的心理努力。我们布置了一个名为建议的决策支持系统的设计,即增加了允许用户对数据影响的地理空间数据覆盖系统的模块。咨询拥有几个任务为中心的功能,适用于其界面的认知决策科学。建议允许用户构建集成的影响可视化,该可视化表示用于手头的决定的适当加权的地理空间目标函数。其他功能提供了比较不同地理空间位置和地区的效用的能力,并智能地探索限制的影响。该系统还旨在满足用户的上下文控制需求。也就是说,在时间放松规划中完成的前期用户设置在执行时,在执行时,可以在执行时偿还,当时可能需要缩小的重新规划。虽然为地理空间决策开发而言,但概念广泛适用于具有多种冲突约束的其他类型的决策。

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