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Integration and Comparison of FDI and Fault Masking Features in Embedded Systems

机译:嵌入式系统中FDI和故障屏蔽功能的集成与比较

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This paper addresses the benefits of integrating fault masking (FM) and fault detection and identification (FDI) methods to an embedded control system. It is shown that using a "smart" sensor in a Triple Modular Redundancy (TMR) configurationimproves the system performance. Within the proposed hybrid system, "smart" sensors are used as redundant modules of the TMR configuration. A novel quality measure, which indicates the confidence level of a "smart" sensor output is used by a purpose-built voting algorithm to produce outputs. The proposed voting algorithm is a modification of weighted average voter, which produces results based on both the sensor output and the associated quality measure. This algorithm performs better than the conventional weighted average voter within a simple TMR configuration for low error ratios (<16). The main reason for this improvement is the capability of hybrid system to mask similar faults. Therefore, the proposed hybrid system produces more reliable results thanthe fault masking approach.
机译:本文解决了将故障屏蔽(FM)和故障检测和识别(FDI)方法集成到嵌入式控制系统的好处。结果表明,在三重模块化冗余(TMR)ConfigurationImproves中使用“智能”传感器系统性能。在所提出的混合系统中,“智能”传感器用作TMR配置的冗余模块。一种新颖的质量措施,它表示“智能”传感器输出的置信水平由目的地构建的投票算法使用以产生输出。所提出的投票算法是对加权平均选民的修改,其基于传感器输出和相关的质量测量产生结果。该算法在简单的TMR配置内比传统的加权平均选民执行更好,以进行低差错率(<16)。这种改进的主要原因是混合系统掩盖了类似故障的能力。因此,所提出的混合系统产生更可靠的结果Thanthe故障掩蔽方法。

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