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A multi-sensor based temperature measuring system with self-diagnosis

机译:一种具有自诊断的多传感器温度测量系统

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A new multi-sensor based temperature measuring system with self-diagnosis is developed to replace a conventional system that uses only a single sensor. Controlled by a 16-bit microprocessor, each sensor output from the sensor array is compared with a randomly selected quantised reference voltage at a voltage comparator and the result is a binary "one" or "zero". The number of "ones" and "zeroes" is counted and the temperature can be estimated using statistical estimation and successive approximation. A software diagnostic algorithm was developed to detect and isolate the faulty sensors that may be present in the sensor array and to recalibrate the system. Experimental results show that temperature measurements obtained are accurate with acceptable variances. With the self-diagnostic algorithm, the accuracy of the system in the presence faulty sensors is significantly improved and a more robust measuring system is produced.
机译:开发了一种具有自诊断的新型多传感器的温度测量系统,以取代仅使用单个传感器的传统系统。由16位微处理器控制,将从传感器阵列输出的每个传感器与电压比较器的随机选择的量化参考电压进行比较,结果是二进制“一个”或“零”。计算“Zeroes”的数量,并且可以使用统计估计和连续近似来估计温度。开发了一种软件诊断算法以检测和隔离可能存在于传感器阵列中的故障传感器并重新校准系统。实验结果表明,获得的温度测量是准确的差异。利用自诊断算法,在存在故障传感器中系统的精度显着提高,产生了更强大的测量系统。

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