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A Novel Method to Develop High Fidelity Laser Sensor Simulation Model for Evaluation of Air to Ground Weapon Algorithms of Combat Aircraft

机译:一种开发高保真激光传感器仿真模型的新方法,以便评估空气对抗飞机地面武器算法

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摘要

Successful release of any air to ground weapon from a combat aircraft is determined based on the positional parameters received from the sensors and the mission cues. Laser designated pod is one of the most sought weapon sensor, which gives the accurate data for Air to Ground weapon aiming. Laser designated pod being hardware intensive system, works with real world environment, it increases the development and integration effort towards finalising the weapon aiming algorithms and also pilot vehicle interface requirements. A novel method using mathematical models and the atmospheric error models is proposed to develop a high fidelity laser designated pod simulation model for functional and performance evaluation of weapon algorithms. The factors affecting the weapon trajectory computations are also considered in the sensor model outputs. The sensor model is integrated in the high fidelity flight simulator, which consists of both aircraft and Real world systems either as actual or simulated for close loop pilot evaluation. The behaviour of the sensor model is cross validated and fine-tuned with the actual sensor output and confirmed that the developed laser designated pod sensor simulation model meets all the requirement to test the air to ground weapons in the flight simulator.
机译:根据从传感器和任务提示接收的位置参数确定来自战斗机的任何空气从战斗机到地面武器的成功释放。激光指定的豆荚是最具寻求的武器传感器之一,它为旨在的地面武器提供了准确的空气数据。激光指定豆荚是硬件密集型系统,与现实世界的环境有用,它提高了最终确定武器瞄准算法的开发和集成工作,也是试验车界面要求。建议采用数学模型和大气误差模型的一种新型方法,为武器算法的功能和性能评估开发高保真激光指定POD仿真模型。在传感器模型输出中也考虑影响武器轨迹计算的因素。传感器型号集成在高保真飞行模拟器中,该模拟器包括飞机和现实世界系统,也可以是近循环试验评估的实际或模拟。传感器模型的行为是交叉验证和微调的实际传感器输出,并确认开发的激光指定的POD传感器仿真模型满足了在飞行模拟器中测试空气到地面武器的所有要求。

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