High-capacity data acquisition system based on Cortex-M3 for aerospace applications

H. K. Singh, Akshay Chauhan, S. Sreelal, S. Sreeekumar
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引用次数: 2

Abstract

Present day launch vehicle telemetry systems require high resolution, precise data acquisition systems to accurately reveal the system performance in extreme environments. In order to achieve high resolution these data acquisition systems invariably use sigma delta ADCs. With the advent of IC technology it has been possible for chip manufacturers to integrate instrumentation amplifiers and Digital filtering functions along with sigma delta ADC cores on the same chip, thereby providing a lot of flexibility to system designers to design and develop miniaturized data acquisitions systems employing such chips. Off late miniaturization has become an important goal, for space launch vehicles to reduce the mass of avionics to enable them to ferry higher pay loads to orbits. This paper describes the design and development of a high channel capacity data acquisition unit which supersedes the currently used systems in terms of bandwidth, input ranges, mass per channel and temperature drift performance. This Data Acquisition system (DAS) can directly interface with RTD, thermocouple and pressure sensors. System has RS-485 interface to outside world for channel configuration programming and acquiring digitized data. The design is based upon Cortex-M3 ARM core based mixed signal microcontroller for signal conditioning and digitization, and 16-bit PIC microcontroller for control functions. Paper describes both the hardware and software design to meet the functional requirements. Finally the performance of the system is evaluated in terms of nonlinearity, accuracy and RSS error and compared with existing ones.
基于Cortex-M3的航空航天大容量数据采集系统
目前,运载火箭遥测系统需要高分辨率、精确的数据采集系统,以准确显示系统在极端环境下的性能。为了达到高分辨率,这些数据采集系统总是使用σ δ adc。随着IC技术的出现,芯片制造商可以在同一芯片上集成仪器放大器和数字滤波功能以及sigma delta ADC内核,从而为系统设计人员设计和开发采用此类芯片的小型化数据采集系统提供了很大的灵活性。后期小型化已经成为航天运载火箭的一个重要目标,减少航空电子设备的质量,使它们能够将更高的有效载荷运送到轨道上。本文介绍了一种高信道容量数据采集单元的设计和开发,它在带宽、输入范围、每信道质量和温度漂移性能方面取代了目前使用的系统。该数据采集系统(DAS)可直接与RTD、热电偶和压力传感器连接。系统具有RS-485对外接口,用于信道组态编程和数字化数据采集。本设计基于Cortex-M3 ARM内核的混合信号单片机实现信号调理和数字化,16位PIC单片机实现控制功能。论文从硬件和软件两方面阐述了满足功能要求的设计方案。最后对系统的非线性、精度和RSS误差进行了评价,并与现有系统进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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