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Noniterative Digital AC Bridge Balance

机译:非迭代数字交流电桥平衡

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摘要

This paper proposes an automatic digital ac bridge-balance technique, which is fast and suitable for high-frequency phase and impedance measurement. Digital ac bridges are balanced by least-mean-square algorithms in the feedback path. This traditional heuristic method is less efficient to converge to the balance point of the digital ac bridge unless certain parameters are appropriately selected. In this paper, a simple method has been proposed, in which balance parameters can be analytically computed by a microcontroller and a corrective action is fed to the digital bridge to achieve null. The technique has four stages of measurement to compute to reach bridge balance without any iteration. This method has a promising potential in the development of accurate miniaturized seamlessly frequency-adjustable eddy-current nondestructive test instruments. Simulation examples, along with the experimental results, are shown in this paper to emphasize the accuracy and reliability of this technique.
机译:本文提出了一种自动数字交流电桥平衡技术,该技术快速且适用于高频相位和阻抗测量。数字交流电桥通过反馈路径中的最小均方算法进行平衡。除非适当选择某些参数,否则这种传统的启发式方法收敛到数字ac桥的平衡点的效率较低。在本文中,提出了一种简单的方法,其中微控制器可以解析地计算出平衡参数,并且将校正作用馈送到数字电桥以实现零值。该技术具有四个测量阶段,可进行计算以达到桥梁平衡而无需任何迭代。该方法在开发精确的小型化无缝频率可调涡流无损检测仪器中具有广阔的应用前景。本文显示了仿真示例以及实验结果,以强调该技术的准确性和可靠性。

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