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A Practical Approach to the Phase and Amplitude Error Estimation for Pseudodynamic (PSD) Testing

机译:对假实际动力学(PSD)测试的相位和幅度误差估计的实用方法

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In PSD testing, measured signals from the experiment are used in command generation on the fly, thus making this method prone to error propagation. One way to assess the accuracy of the real-time (or fast) PSD test results is to assess the accuracy of the tracking of command displacements imposed by the hydraulic actuators. This paper introduces indicators that can be used to uncouple and quantify actuator lag/lead (i.e., phase errors) and undershoot/overshoot (i.e., amplitude errors) errors that occur while imposing the command displacements dynamically in realtime. These closed-form indicators provide monitors that are not experiment-specific and are simple to use. They use uncomplicated mathematical functions, which makes them suitable candidates for online implementation with the potential for incorporation into the control law to improve the actuator control. The procedure and the associated theoretical background are explained for each step and then the properties of the indicators are examined through several predefined command and measured signals with known characteristics. In addition, the performance of the indicators is evaluated by comparing the results with those revealed by the previous indicators.
机译:在PSD测试中,来自实验的测量信号在飞行中用于命令生成,从而使该方法容易出现误差传播。评估实时(或快速)PSD测试结果的准确性的一种方法是评估液压执行器施加的命令位移的跟踪的准确性。本文介绍了可用于耦合和量化执行器滞后/铅(即相位误差)和下冲/过冲(即幅度误差)错误的指示器,而在实时动态地施加命令位移。这些封闭式指示器提供了不具体实验的监视器,并且使用简单。他们使用简单的数学函数,这使得它们适用于在线实施的候选人,其有可能纳入控制法以改善执行器控制。对每个步骤解释的过程和相关的理论背景,然后通过几个预定义的命令检查指标的属性,并通过已知特征测量信号。此外,通过将结果与先前指标显示的结果进行比较来评估指标的性能。

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