首页> 外文会议>Defect and Fault Tolerance in VLSI Systems, 2009. DFT '09 >Concurrent Detection of Faults Affecting Energy Harvesting Circuits of Self-Powered Wearable Sensors
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Concurrent Detection of Faults Affecting Energy Harvesting Circuits of Self-Powered Wearable Sensors

机译:并发检测影响自供电可穿戴传感器能量收集电路的故障

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We address the problem of the concurrent detection of faults affecting an energy harvesting circuit that powers a wearable biomedical sensor. We analyze the effects of such faults, and we show that they may make it fail in producing the required power supply voltage level for the sensor. We propose a new low cost (in terms of power consumption and area overhead) additional circuit to monitor continuously, and concurrently with normal operation, the power supply voltage given to the output of the energy harvesting circuit. Such a monitor gives an error indication if the provided power supply voltage falls below the minimum value required by the sensor to work properly, thus allowing the activation of proper recovery actions to guarantee system fault tolerance. Our monitor is self checking with respect to its possible internal faults.
机译:我们解决了同时检测故障的问题,这些故障会影响为可穿戴生物医学传感器供电的能量收集电路。我们分析了此类故障的影响,并表明它们可能导致无法产生传感器所需的电源电压电平。我们提出了一种新的低成本(就功耗和面积开销而言)的附加电路,以便在正常运行的同时连续监测提供给能量收集电路输出的电源电压。如果所提供的电源电压降到传感器正常工作所需的最小值以下,则此类监视器会给出错误指示,从而允许激活适当的恢复措施以保证系统的容错能力。我们的显示器正在针对其内部故障进行自我检查。

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