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Wireless data acquisition system with signal processing and control modules within Field Programmable Gate Array (FPGA)

机译:在现场可编程门阵列(FPGA)中具有信号处理和控制模块的无线数据采集系统

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Present data acquisition systems for avionics applications use microcontrollers with external filters and Field Programmable Gate Arrays (FPGAs) with external Analog to Digital Converters (ADC) to process the digitized data. To minimize the use of external components, we implement the digital filter and ADC in FPGA. Microcontroller based systems may get affected in adverse conditions like high-radiation environments and high-temperature variations. An FPGA based data acquisition system for space applications is proposed to resolve this issue. FPGAs can be used for reliable communication in high radiation environments and are available in extended industrial grades/space grades. We used a Flash-based FPGA which allows re-programmability. This paper discusses the system concepts for implementing a wireless FPGA based data acquisition unit with practically no external components in it. The study involves digitization of analog sensor channels, processing the digitized data, transfer of the processed data between master and slave FPGAs. There are n slave nodes in which data is processed and one master node in which data is finally received and stored. Communication between the slave nodes and the master node is facilitated by one or more wireless interfaces. Thus they communicate via a multi-drop network. The work involves simulation in MATLAB, HDL coding & simulation, prototype development, system interfacing, assembly and testing. We present the simulation results and identify possible future courses of action.
机译:当前用于航空电子应用的数据采集系统使用具有外部滤波器的微控制器和具有外部模数转换器(ADC)的现场可编程门阵列(FPGA)来处理数字化数据。为了最大限度地减少外部组件的使用,我们在FPGA中实现了数字滤波器和ADC。基于微控制器的系统可能会在不利条件下受到影响,例如高辐射环境和高温变化。为了解决这个问题,提出了一种基于FPGA的用于太空应用的数据采集系统。 FPGA可以用于高辐射环境中的可靠通信,并且可以用于扩展的工业等级/空间等级。我们使用了基于闪存的FPGA,该FPGA允许重新编程。本文讨论了用于实现几乎没有外部组件的基于无线FPGA的数据采集单元的系统概念。这项研究涉及模拟传感器通道的数字化,数字化数据的处理,在主从FPGA之间传输处理后的数据。有n个从属节点在其中处理数据,而有一个主节点在其中最后接收和存储数据。一个或多个无线接口促进了从节点与主节点之间的通信。因此,它们通过多点网络进行通信。这项工作涉及MATLAB的仿真,HDL编码和仿真,原型开发,系统接口,组装和测试。我们提出了仿真结果,并确定了未来可能采取的行动。

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