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Increasing the Efficacy of the Conventional Deformation Analysis Methods: Alternative Strategy

机译:增加常规变形分析方法的功效:替代策略

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摘要

In deformation analysis, it is important to know whether the points detected by conventional deformation analysis (CDA) are really displaced or not, and also if there are any more displaced points in the network. It is impossible to answer these questions unless the actual positions of the displaced points before the analysis are known. Moreover, the efficacy of the analysis method used must be known. The efficacy of CDA methods can be measured using the mean success rate (MSR). When a displacement occurs at a point, both the observations that belong to the displaced point and to those undisplaced points closest to it are affected. The least-squares estimation (LSE) spreads these effects to various degrees over all the coordinates. As a result, the actual displacements are not exactly reflected in the coordinates of that point. Consequently, CDA methods may wrongly identify a point as being displaced. Also the F-test is known not to be successful in some cases. Hence, the MSRs of the CDA methods are smaller than what can be expected. To eliminate the smearing effect of the LSE and the indifference of the F-test, in order to obtain more specific results a new strategy that works on absolute deformation monitoring network has been developed based on division into subnetworks.
机译:在变形分析中,重要的是要知道通过常规变形分析(CDA)检测到的点是否确实发生了位移,以及网络中是否还有更多的位移点。除非知道分析之前位移点的实际位置,否则无法回答这些问题。此外,必须知道所用分析方法的功效。 CDA方法的功效可以使用平均成功率(MSR)进行衡量。当某个点发生位移时,属于位移点的观测值和最接近位移点的那些未位移点的观测值都会受到影响。最小二乘估计(LSE)将这些影响散布在所有坐标上的不同程度。结果,实际位移未完全反映在该点的坐标中。因此,CDA方法可能会错误地将点识别为已位移。同样,已知F检验在某些情况下不会成功。因此,CDA方法的MSR比预期的要小。为了消除LSE的拖尾效应和F检验的无差异性,为了获得更具体的结果,在划分为子网络的基础上,开发了一种适用于绝对变形监测网络的新策略。

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