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Design of extensible Meteorological data acquisition system based on FPGA

机译:基于FPGA的可扩展气象数据采集系统设计

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In order to compensate the tropospheric refraction error generated in the process of satellite navigation and positioning. Temperature, humidity and air pressure had to be used in concerned models to calculate the value of this error. While FPGA XC6SLX16 was used as the core processor, the integrated silicon pressure sensor MPX4115A and digital temperature-humidity sensor SHT75 are used as the basic meteorological parameter detection devices. The core processer was used to control the real-time sampling of ADC AD7608 and to acquire the serial output data of SHT75. The data was stored in the BRAM of XC6SLX16 and used to generate standard meteorological parameters in NEMA format. The whole design was based on Altium hardware platform and ISE software platform. The system was described in the VHDL language and schematic diagram to realize the correct detection of temperature, humidity, air pressure. The 8-channel synchronous sampling characteristics of AD7608 and programmable external resources of FPGA laid the foundation for the increasing of analog or digital meteorological element signal. The designed meteorological data acquisition system featured low cost, high performance, multiple expansions.
机译:为了补偿对流层折射误差,在卫星导航和定位过程中产生。在相关模型中必须使用温度,湿度和气压来计算此误差的值。使用FPGA XC6SLX16作为核心处理器时,集成的硅压力传感器MPX4115A和数字温湿度传感器SHT75被用作基本的气象参数检测设备。核心处理器用于控制ADC AD7608的实时采样并获取SHT75的串行输出数据。数据存储在XC6SLX16的BRAM中,并用于生成NEMA格式的标准气象参数。整个设计基于Altium硬件平台和ISE软件平台。该系统以VHDL语言和示意图进行了描述,以实现对温度,湿度和气压的正确检测。 AD7608的8通道同步采样特性和FPGA的可编程外部资源为增加模拟或数字气象元素信号奠定了基础。设计的气象数据采集系统具有低成本,高性能,多次扩展的特点。

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