Design and analysis method of reliable firmware of LWD tool’s controller

Liao Yanjun, Zhang Jiawei, Tang Wei, Zhang Wei
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Abstract

As an essential component of Logging While Drilling (LWD) tool, controller is responsible for logging flow control, instruction decoding, environmental parameter measurement and data storage. Firmware with high reliability has substantial significance to ensure reliable work of the controller. A design and analysis method of controller’s firmware is proposed in this paper. On the basis of function analysis of the controller, a flexible firmware architecture using modularization technology is presented. On the other hand, an improved Failure Modes Effects and Criticality Analysis (FMECA) method is presented, which considers coupling degree in determining conditional probability to introduce severe results given a failure mode occurs. Engineers can optimize the strategy of design resource distribution after criticality analysis, which may further improve the reliability of the controller’s firmware. The proposed design and analysis method of reliable firmware is applied to new type neutron LWD tool’s controller, which has worked reliably in several offshore wells.
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随钻工具控制器可靠固件的设计与分析方法
控制器是随钻测井(LWD)工具的重要组成部分,负责测井流程控制、指令解码、环境参数测量和数据存储。具有高可靠性的固件对于保证控制器的可靠工作具有重要意义。本文提出了一种控制器固件的设计与分析方法。在对控制器功能进行分析的基础上,提出了一种采用模块化技术的柔性固件体系结构。另一方面,提出了一种改进的失效模式影响和临界性分析方法(FMECA),该方法在确定条件概率时考虑了耦合程度,以引入给定失效模式下的严重结果。通过临界性分析,工程师可以优化设计资源分配策略,进一步提高控制器固件的可靠性。将所提出的可靠固件设计与分析方法应用于新型中子随钻测井仪的控制器中,并在多口海上油井中可靠运行。
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