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Real-time infrared signature model validation for hardware-in-the-loop simulations

机译:用于硬件在环仿真的实时红外签名模型验证

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Abstract: Techniques and tools for validation of real-time infrared target signature models are presented. The model validation techniques presented in this paper were developed for hardware-in-the-loop (HWIL) simulations at the U.S. Army Missile Command's Research, Development, and Engineering Center. Real-time target model validation is a required deliverable to the customer of a HWIL simulation facility and is a critical part of ensuring the fidelity of a HWIL simulation. There are two levels of real-time target model validation. The first level is comparison of the target model to some baseline or measured data which answers the question `are the simulation inputs correct?'. The second level of validation is a simulation validation which answers the question `for a given target model input is the simulation hardware and software generating the correct output?'. This paper deals primarily with the first level of target model validation. IR target signature models have often been validated by subjective visual inspection or by objective, but limited, statistical comparisons. Subjective methods can be very satisfying to the simulation developer but offer little comfort to the simulation customer since subjective methods cannot be documented. Generic statistical methods offer a level of documentation, yet are often not robust enough to fully test the fidelity of an IR signature. Advances in infrared seeker and sensor technology have led to the necessity of system specific target model validation. For any HWIL simulation it must be demonstrated that the sensor responds to the real-time signature model in a manner which is functionally equivalent to the sensor's response to a baseline model. Depending on the application, a baseline method can be measured IR imagery or the output of a validated IR signature prediction code. Tools are described that generate validation data for HWIL simulations at MICOM and example real-time model validations are presented.!0
机译:摘要:介绍了用于验证实时红外目标签名模型的技术和工具。本文介绍的模型验证技术是为美国陆军导弹司令部的研究,开发和工程中心的硬件在环(HWIL)仿真开发的。实时目标模型验证是交付给HWIL仿真设施的客户所必需的,并且是确保HWIL仿真保真度的关键部分。实时目标模型验证有两个级别。第一级是将目标模型与一些基线或测量数据进行比较,从而回答“模拟输入是否正确?”这一问题。验证的第二个级别是仿真验证,它回答以下问题:“对于给定的目标模型输入,仿真硬件和软件是否生成了正确的输出?”。本文主要涉及目标模型验证的第一级。红外目标签名模型通常已通过主观视觉检查或客观但有限的统计比较进行了验证。主观方法可能会使模拟开发人员非常满意,但由于无法记录主观方法,因此给模拟客户带来的舒适感很少。通用统计方法提供了一定程度的文档编制,但通常不足以完全测试IR签名的保真度。红外搜寻器和传感器技术的进步已导致需要进行系统特定的目标模型验证。对于任何HWIL仿真,必须证明传感器以与传感器对基准模型的响应在功能上等效的方式对实时签名模型做出响应。根据应用,可以测量基线方法的红外图像或经过验证的红外特征预测代码的输出。描述了为MICOM上的HWIL仿真生成验证数据的工具,并提供了示例实时模型验证。!0

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