应用于航空航天控制系统的数字信号处理器微芯片

A. Jackson
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引用次数: 0

摘要

作者回顾了航空航天实时控制应用中对控制器的要求,并将其与数字信号处理(DSP)领域的要求进行了比较。研究了一系列功能强大的DSP单片机在航天控制系统中的应用。以一个简单的控制系统为例,介绍了基本概念,并说明了数据采样率的影响。给出了一种浮点DSP单片机实现控制律所需的代码序列,并给出了时序。结果表明,摩托罗拉DSP56001和DSP96002等DSP微芯片功能强大,具有实时控制应用所需的速度。它们的指令集很容易满足实时操作系统的要求。定点单元,如具有24b精度的DSP56001,对于许多应用来说已经足够了。对于复杂的控制系统,如那些使用卡尔曼滤波来预测系统状态的系统,具有浮点能力的DSP微芯片,如32b DSP96002,将是合乎逻辑的选择,因为它们增加了动态范围,更容易使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital signal processor microchips applied to aerospace control systems
The author reviews the requirements placed on the controller in real-time aerospace control applications and compares them with those found in the digital signal processing (DSP) field. The application of a family of powerful DSP microchips to the field of aerospace control systems is studied. An example of a simple control system is used to present the basic concepts and to show the effects of data sampling rate. The code sequence required to implement the control law is shown for a floating-point DSP microchip, and the timing is also given. It is concluded that DSP microchips, such as the Motorola DSP56001 and DSP96002, are extremely powerful and have the speed necessary for real-time control applications. Their instruction sets easily meet the requirements for real-time operating systems. Fixed-point units, such as the DSP56001 with 24-b precision, are more than adequate for many applications. For complicated control systems, like those using Kalman filtering to predict the state of the system, DSP microchips with floating-point capability, such as the 32-b DSP96002, would be the logical choice, for they increase dynamic range and are much easier to use.<>
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