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Design and Calibration of the X-33 Flush Airdata Sensing (FADS) System

机译:X-33齐平空气数据传感(FADS)系统的设计和校准

摘要

This paper presents the design of the X-33 Flush Airdata Sensing (FADS) system. The X-33 FADS uses a matrix of pressure orifices on the vehicle nose to estimate airdata parameters. The system is designed with dual-redundant measurement hardware, which produces two independent measurement paths. Airdata parameters that correspond to the measurement path with the minimum fit error are selected as the output values. This method enables a single sensor failure to occur with minimal degrading of the system performance. The paper shows the X-33 FADS architecture, derives the estimating algorithms, and demonstrates a mathematical analysis of the FADS system stability. Preliminary aerodynamic calibrations are also presented here. The calibration parameters, the position error coefficient (epsilon), and flow correction terms for the angle of attack (delta alpha), and angle of sideslip (delta beta) are derived from wind tunnel data. Statistical accuracy of' the calibration is evaluated by comparing the wind tunnel reference conditions to the airdata parameters estimated. This comparison is accomplished by applying the calibrated FADS algorithm to the sensed wind tunnel pressures. When the resulting accuracy estimates are compared to accuracy requirements for the X-33 airdata, the FADS system meets these requirements.
机译:本文介绍了X-33齐平空气数据传感(FADS)系统的设计。 X-33 FADS使用车头上的压力孔矩阵来估算空气数据参数。该系统设计有双冗余测量硬件,可产生两条独立的测量路径。选择与具有最小拟合误差的测量路径相对应的Airdata参数作为输出值。这种方法可以使单个传感器发生故障,并且对系统性能的影响降到最低。本文展示了X-33 FADS体系结构,推导了估计算法,并论证了FADS系统稳定性的数学分析。此处还提供了初步的空气动力学校准。校准参数,位置误差系数(ε),迎角(δα)和侧滑角(δβ)的流量校正项均来自风洞数据。通过将风洞参考条件与估计的空气数据参数进行比较,可以评估校准的统计准确性。通过将校准的FADS算法应用于感测到的风洞压力来完成此比较。将得出的精度估算值与X-33航空数据的精度要求进行比较时,FADS系统即可满足这些要求。

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