问题修正对给定微程序控制器影响的优化

G. Biehl, W. Grass, P. Hall
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引用次数: 5

摘要

对于数字控制器的逻辑设计,已经有了高效的综合算法。其中大多数都假设必须构建一个由最少数量的组件组成的全新硬件。这些算法的实现构成了逻辑设计CAD系统的重要组成部分。为了在实践中被接受,CAD系统必须考虑到额外的要求。其中之一是将控制任务的后续修改所引起的硬件更改最小化,这些更改通常在硬件实现完成后变得必要。本文介绍了一种通用结构的微程序控制器解决这一问题的方法。该方法作为CAD程序系统LOGE的一个模块实现。LOGE支持硬连线,微编程和基于微处理器的控制器的逻辑设计。LOGE已经在一些工业应用中被证明是一个强大的设计工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the Influence of Problem Modifications on Given Microprogrammed Controllers
For the logic design of digital controllers, efficient synthesis algorithms have been published. Most of these assume, that a completely new hardware consisting of the fewest number of components has to be built. The implementation of those algorithms form an important part of a CAD system for logic design. In order to be accepted in practice, a CAD system has to take into account additional requirements. One of these concerns with the minimization of hardware changes caused by subsequent modifications of the control task which often become necessary after the completion of the hardware implementation. This paper describes a method which solves this problem for an universal structure of microprogrammed controllers. This method is implemented as a module of the CAD program system LOGE. LOGE supports the logic design of hardwired, microprogrammed, and microprocessor based controllers. LOGE already proved to be a powerful design tool in several industrial applications.
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