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Model Predictive Control of Agile Projectiles

机译:敏捷弹丸的模型预测控制

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Currently, gun-launched precision munitions have limited maneuverability to prosecute moving or defilade targets, or even greatly extend range. This paper provides a theoretical underpinning for the flight control strategy of statically unstable projectiles. The approach is to develop a high-fidelity understanding of the flight physics and include that theory in the flight control algorithm. A model predictive control algorithm is developed to achieve the maneuverability goal. Parametric variation of the inherent static stability was undertaken for an agile airframe. Six degree-of-freedom flight simulations were performed to assess the flight control algorithm. Results demonstate that stability in the yaw and roll channels even for statically unstable projectiles can be maintained over the range of airframe configurations for this study. Modest control action was necessary to achieve the required flight stability.
机译:目前,枪支发射的精确弹药对机动目标或突击目标的机动性有限,甚至无法扩大射程。本文为静态不稳定弹丸的飞行控制策略提供了理论基础。该方法是发展对飞行物理学的高保真理解,并将该理论包括在飞行控制算法中。开发了模型预测控制算法以实现可操作性目标。对敏捷机身进行了固有静态稳定性的参数变化。进行了六个自由度飞行模拟,以评估飞行控制算法。结果表明,在本研究的整个机身配置范围内,即使对于静态不稳定的弹丸,也可以保持偏航和横摇通道的稳定性。为了达到所需的飞行稳定性,必须采取适度的控制措施。

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