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    • 1. 发明申请
    • Perturbation detection
    • 扰动检测
    • US20050156101A1
    • 2005-07-21
    • US10508480
    • 2003-03-19
    • Stephen HaywardTimothy CoxMarie Anderson
    • Stephen HaywardTimothy CoxMarie Anderson
    • G01J3/45G01N21/45G01J3/50H01J5/16H01J40/14
    • G01N21/45G01J3/45
    • A method for detecting perturbation of a physical system from a reference state associated with a reference parameter (ω0) to a perturbed state associated with a perturbed parameter (ω) includes firstly deriving the reference parameter (ω0). A reference vector (F) is then derived which describes the system's state at the reference parameter (ω0). A measurement-related vector (Z) associated with a perturbed state of the system is then subtracted from the reference vector (F) to provide an error vector (E). The error vector members are summed and normalised by division of a summation of elements of a vector (F′) representing a derivative (f(ω0δω)e) of a reference itself represented by the reference vector (F), the derivative (f(ω0δω)e) being evaluated at the reference parameter (ω0). This provides a result equal to the difference (ω-(ω0) between the perturbed parameter (ω) and the reference parameter (ω0).
    • 用于检测物理系统与参考参数(ω= 0)相关联的参考状态的扰动到与扰动参数(ω)相关联的扰动状态的方法包括首先导出参考参数(ω, SUB> 0 )。 然后导出参考矢量(F),其描述参考参数(Ω-0> 0)处的系统状态。 然后从参考矢量(F)中减去与系统的扰动状态相关联的测量相关矢量(Z)以提供误差向量(E)。 误差向量成员被加法和归一化,该方法是通过表示一个向量(F')的元素的和(F(ω) 参考自身由参考矢量(F)表示,在参考参数(ω= 0)处评估的导数(f(ω,Δδ,Δomega) SUB>)。 这提供了等于扰动参数(ω)和参考参数(ω= 0 <0>)之间的差值(ω-ωω)的结果。