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A microcontroller-based data acquisition system for solar radiation and environmental monitoring

机译:基于微控制器的数据采集系统,用于太阳辐射和环境监测

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The hardware design and operation of a battery-powered microcontroller-based data acquisition system (DAS) for unattended remote measurements are presented. The system was designed around the ST62E20 8-bit microcontroller and applied for solar radiation monitoring. The measurement system uses the SolData silicon-cell pyranometer as the solar radiation sensor. The data from the sensor is collected by means of on-chip A/D converter and stored in a serial EEPROM until uploaded to a portable computer. Keeping the DAS in a low-power mode, which is only interrupted when measurements are to be taken or when a computer is connected to retrieve the stored data, minimizes power consumption. An on-chip timer provides an interrupt to awaken the system from its low-power wait mode at 10-min intervals to sample and store the data. At the end of each data collection period, the acquired data will be transmitted to the computer through the RS232 serial port for subsequent analysis. Only unprocessed data is stored in EEPROM. Quality control and data analysis is done off-line in the laboratory to minimize system cost, complexity and system downtime. Field tests and comparisons of this measurement system against the standard Eppley precision spectral pyranometer (PSP) have shown a slightly nonlinear correlation and that the accuracy of this measurement system as applied to solar radiation monitoring is fairly good, typically /spl plusmn/13 W/m/sup 2/.
机译:介绍了用于无人值守远程测量的电池供电的基于微控制器的数据采集系统(DAS)的硬件设计和操作。该系统围绕ST62E20 8位微控制器设计,并用于太阳辐射监控。该测量系统使用SolData硅电池日射强度计作为太阳辐射传感器。来自传感器的数据通过片上A / D转换器收集,并存储在串行EEPROM中,直到上载到便携式计算机为止。将DAS保持在低功耗模式(仅在进行测量或连接计算机以检索存储的数据时才会中断)可以最大程度地降低功耗。片上定时器提供中断,以10分钟的间隔将系统从低功耗等待模式唤醒,以采样和存储数据。在每个数据收集周期结束时,所获取的数据将通过RS232串行端口传输到计算机以进行后续分析。 EEPROM中仅存储未处理的数据。质量控制和数据分析在实验室离线进行,以最大程度地降低系统成本,复杂性和系统停机时间。对该测试系统与标准Eppley精密光谱日射强度计(PSP)进行的现场测试和比较表明,该测试系统存在轻微的非线性相关性,并且该测量系统应用于太阳辐射监测的精度相当好,通常为/ spl plusmn / 13 W / m / sup 2 /。

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