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首页> 外文期刊>IEE proceedings. Part E, Computers and digital techniques >Multiple fault detection and diagnosis techniques for lookup table FPGAs
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Multiple fault detection and diagnosis techniques for lookup table FPGAs

机译:查找表FPGA的多种故障检测和诊断技术

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摘要

A novel fault detection and diagnosis technique named the 'ping-pong' type approach for field programmable gate arrays (FPGAs) is proposed in the paper. The authors first derive efficient (k+1) test configurations for a single configurable logic block (CLB) which guarantees 100percent fault coverage, where k denotes the number of inputs of a lookup table (LUT). Furthermore, the whole CLB array is divided into cell groups and each group contains two cells - the master cell and the slave cell. Since both cells can be used as the test pattern generator (TPG) and the blocks under test (BUTs) at the same time, one test session is required instead of two test sessions for traditional fault detection techniques. The test complexity can then be reduced significantly. The name of the ping-pong type approach comes from the fact that, if the master cell sends a test pattern to the slave cell, the output of the slave cell is forwarded to the input of the master cell as a test pattern. By iterating this process, all cells will receive pseudo-exhaustive test patterns. The output of each cell is read out immediately after one test pattern is applied through the configuration memory readback or implicit scan circuitry. Therefore, multiple fault detection and location can be achieved easily. Since the number of test sessions is less than that for the traditional approaches, significant speedup can be guaranteed. The detection and diagnosis complexity are compared with those of other works.
机译:本文提出了一种新颖的故障检测和诊断技术,称为现场可编程门阵列(FPGA)的“乒乓”型方法。作者首先针对单个可配置逻辑块(CLB)得出了有效的(k + 1)测试配置,该配置可确保100%的故障覆盖率,其中k表示查找表(LUT)的输入数量。此外,整个CLB阵列分为多个单元组,每个组包含两个单元-主单元和从单元。由于两个单元都可以同时用作测试模式生成器(TPG)和被测模块(BUT),因此对于传统的故障检测技术,需要一个测试会话,而不是两个测试会话。这样可以大大降低测试的复杂性。乒乓类型方法的名称来自以下事实:如果主控单元向从属单元发送测试模式,则从属单元的输出将作为测试模式转发到主控单元的输入。通过重复此过程,所有单元将收到伪穷尽测试模式。通过配置存储器回读或隐式扫描电路施加一个测试图案后,立即读取每个单元的输出。因此,可以容易地实现多个故障检测和定位。由于测试会话的数量少于传统方法的数量,因此可以确保显着的加速。将检测和诊断的复杂性与其他工作进行了比较。

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