首页> 外文会议>International conference on control, instrumentation, communication and computational technologies >Split range calibration in pressure measurement of re-entry flush air data sensing system (FADS) for overall system accuracy enhancement
【24h】

Split range calibration in pressure measurement of re-entry flush air data sensing system (FADS) for overall system accuracy enhancement

机译:再入冲洗空气数据传感系统(FADS)压力测量中的分量程校准,可提高整体系统精度

获取原文

摘要

Flush Air Data Sensing System (FADS) forms mission critical sub system in future reusable space transportation systems. FADS makes use of surface pressure measurements from the nose cap of the vehicle for deriving the air data parameters of the vehicle such as angle of attack, angle of sideslip, Mach number, etc. These parameters are used by the control and guidance system of the vehicle for reentry flight management as well as for subsequent mission phases upto landing. The overall system accuracy of FADS is mainly dictated by the accuracy of the surface pressure measurements. The demanded accuracies are of the order of 100 Pascal in a full scale of 140000 Pascal (0.07% FS). This paper addresses the four split range pressure calibration scheme that is used for achieving the above accuracy. Trade off studies carried out on the number of split ranges and the order of least squares curve fit to be used are presented. The scheme for voltage based split range selection to reduce the errors at range boundary crossover points and during recovery after a port blockage is presented. Details of the hysteresis logic used for real time implementation for preventing back and forth switching of scale factors at the split range crossover points are also presented. The use of split range calibration and hysteresis logic for pressure sensors in FADS has not been reported in earlier literature. Experimental results are presented which establishes the demanded pressure measurement accuracy.
机译:齐平空气数据传感系统(FADS)构成了未来可重复使用的空间运输系统中的关键任务子系统。 FADS利用车辆前盖的表面压力测量值来得出车辆的空气数据参数,例如迎角,侧滑角,马赫数等。这些参数由车辆的控制和引导系统使用。再入飞行管理以及直至着陆的后续任务阶段的飞行器。 FADS的整体系统精度主要由表面压力测量的精度决定。要求的精度约为100帕斯卡,满刻度为140000帕斯卡(0.07%FS)。本文介绍了用于实现上述精度的四个分割范围的压力校准方案。给出了对分割范围的数量和要使用的最小二乘曲线拟合的阶数进行的权衡研究。提出了基于电压的分段范围选择方案,以减少端口边界交叉点和端口阻塞后恢复期间的误差。还介绍了用于实时实现的磁滞逻辑的详细信息,以防止在分割范围交叉点进行比例因子的来回切换。在FADS中,压力传感器的分程校准和滞后逻辑的使用尚未在早期文献中报道。实验结果表明建立所需的压力测量精度。

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