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Perception Testing: A Key Component in Modeling and Simulation at NVESD

机译:感知测试:NVESD建模和仿真的关键组成部分

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The U.S. Army's Night Vision and Electronic Sensors Directorate (NVESD) Modeling and Simulation Division is responsible for developing and enhancing electro-optic/infrared sensor performance models that are used in wargames and for sensor trade studies. Predicting how well a sensor performs a military task depends on both the physics of the sensor and how well observers perform specific tasks while using that sensor. An example of such a task could be to search and detect targets of military interest. Another task could be to identify a target as a threat or non-threat. A typical sensor development program involves analyses and trade-offs among a number of variables such as field of view, resolution, range, compression techniques, etc. Observer performance results, obtained in the NVESD perception lab, provide essential information to bridge the gap between the physics of a system and the humans using that system. This information is then used to develop and validate models, to conduct design trade-off studies and to generate insights into the development of new systems for soldiers in surveillance, urban combat, and all types of military activities. Computer scientists and engineers in the perception lab design tests and process both real and simulated imagery in order to isolate the effect or design being studied. Then, in accordance with an approved protocol for human subjects research, experiments are administered to the desired number of observers. Results are tabulated and analyzed. The primary focus of this paper is to describe current capabilities of the NVESD perception lab regarding computer-based observer performance testing of sensor imagery, what types of experiments have been completed and plans for the future.
机译:美国陆军夜视和电子传感器局(NVESD)建模和仿真部门负责开发和增强用于战争游戏和传感器贸易研究的电光/红外传感器性能模型。预测传感器执行军事任务的能力取决于传感器的物理特性以及观察者在使用该传感器时执行特定任务的能力。此类任务的一个示例可能是搜索和检测军事利益目标。另一个任务可能是将目标识别为威胁或非威胁。典型的传感器开发程序涉及许多变量之间的分析和折衷,例如视野,分辨率,范围,压缩技术等。在NVESD感知实验室中获得的观测器性能结果可提供必要的信息,以弥合两者之间的差距。系统的物理学以及使用该系统的人。然后,这些信息将用于开发和验证模型,进行设计权衡研究,并为监视,城市战斗和所有类型的军事活动的士兵开发新系统提供见解。感知实验室中的计算机科学家和工程师设计测试和处理真实图像和模拟图像,以隔离正在研究的效果或设计。然后,根据批准的人类受试者研究方案,对所需数量的观察者进行实验。将结果制成表格并进行分析。本文的主要重点是描述NVESD感知实验室的当前功能,这些功能涉及基于计算机的传感器图像观察者性能测试,已经完成的实验类型以及未来的计划。

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