首页> 外文会议>International Conference on Unmanned Aircraft Systems >Integrated reconfigurable control and guidance based on evaluation of degraded performance
【24h】

Integrated reconfigurable control and guidance based on evaluation of degraded performance

机译:基于性能下降评估的集成可重构控制和指导

获取原文

摘要

The present paper is focused on analysing an integrated reconfigurable control and guidance approach for recovering a small fixed-wing UAV from different actuator faults, which cover locked in place (stuck) and loss of effectiveness. The model of the UAV Aerosonde is used to develop a reconfigurable control system based on the control allocation technique for a variety of faults, such as locked-in-place control surfaces. It is shown through simulation that the developed technique is successful to recover the aircraft from various faults but cannot guarantee success on the planned mission. For mission scenarios where performance degradation is such that the prescribed trajectory cannot be achieved, a reconfigurable guidance system is developed, which is capable of adapting parameters such as the minimum turning radius and the look-ahead distance for obstacle avoidance, to allow the vehicle to dynamically generate a path which guides the aircraft around the no-fly zones taking into account the post-fault reduced performance. Path following is performed by means of a non-linear lateral guidance law and a collision avoidance algorithm is implemented as well. Finally, the integration of control reconfiguration and guidance adaptation is carried out to maximise probabilities of post-failure success in the mission. A methodology is developed, using an error based control allocation parameter, as a measure of performance degradation, which links both reconfiguration and guidance systems. The developed method, although approximate, is proven to be an efficient way of allocating the required degree of reconfiguration in guidance commands when an accurate prediction of the actual performance is not available.
机译:本文的重点是分析一种集成的可重构控制和制导方法,该方法可从不同的执行器故障中恢复小型固定翼无人机,这些故障涵盖了锁定到位(卡住)和有效性下降的情况。无人机探空仪的模型用于基于控制分配技术开发可重配置的控制系统,以解决各种故障,例如锁定在控制面上。通过仿真表明,所开发的技术能够成功地从各种故障中恢复飞机,但不能保证计划任务的成功。对于性能下降到无法达到规定轨迹的任务场景,开发了可重新配置的制导系统,该系统能够调整参数,例如最小转弯半径和回避距离,以避开障碍物,从而使车辆能够考虑到故障后降低的性能,动态生成一条路径引导飞机绕过禁飞区。路径跟随是通过非线性横向引导定律进行的,并且还实现了避免碰撞的算法。最后,将控制重新配置和制导调整相结合,以使任务失败后成功的可能性最大化。使用基于错误的控制分配参数开发了一种方法,以衡量性能下降,该方法将重新配置和制导系统联系在一起。当无法获得对实际性能的准确预测时,开发的方法虽然是近似的,但被证明是在制导命令中分配所需重新配置程度的有效方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号