A debugging system for azimuthally acoustic logging tools based on modular and hierarchical design ideas

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Abstract

On the basis of modular and hierarchical design ideas, this study presents a debugging system for an azimuthally sensitive acoustic bond tool (AABT). The debugging system includes three parts: a personal computer (PC), embedded front-end machine and function expansion boards. Modular and hierarchical design ideas are conducted in all design and debug processes. The PC communicates with the front-end machine via the Internet, and the front-end machine and function expansion boards connect each other by the extended parallel bus. In this method, the three parts of the debugging system form stable and high-speed data communication. This study not only introduces the system-level debugging and sub-system level debugging of the tool but also the debugging of the analogue signal processing board, which is important and greatly used in logging tools. Experiments illustrate that the debugging system can greatly improve AABT verification and calibration efficiency and that, board-level debugging can examine and improve analogue signal processing boards. The design thinking is clear and the design structure is reasonable, thus making it easy to extend and upgrade the debugging system.

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Zhang, K., Ju, X. D., Lu, J. Q., & Men, B. Y. (2016). A debugging system for azimuthally acoustic logging tools based on modular and hierarchical design ideas. Journal of Geophysics and Engineering, 13(4), 430–440. https://doi.org/10.1088/1742-2132/13/4/430

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