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Toward a unified paradigm for constructing and understanding robot processes

机译:迈向构建和理解机器人过程的统一范式

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Dijkstra argued (1968) that the structure of programs should match that of their execution. This challenge is important but difficult for the kinds of fluid multiprocess programming required by even simple robotics problems. Among recognized paradigms applied to robotics, some express process structure more directly than others, but none easily encompasses the full range of process and control relationships needed to describe interesting behavior simply. The approach described here, structured concurrent programming, adopts a diverse set of process structures as primary language elements with three consequences: (i) explicit process management via process ID's is not used: (ii) previously disjoint programming paradigms are integrated more tightly, than before: (iii) it becomes more feasible for textual programs to execute "in place" in a live programming environment.
机译:Dijkstra(1968)认为程序的结构应该与它们的执行相匹配。对于即使是简单的机器人问题所要求的各种流体多过程编程,这一挑战也很重要,但是却很困难。在公认的应用于机器人技术的范例中,有些范例比其他范例更直接地表达过程结构,但没有一个可以轻松地涵盖简单描述有趣行为所需的全部过程和控制关系。这里描述的方法(结构化并发编程)采用一套不同的过程结构作为主要的语言元素,从而产生以下三种后果:(i)不使用通过过程ID进行显式的过程管理:(ii)以前不相交的编程范例与之前:(iii)文本程序在实时编程环境中“就地”执行变得更加可行。

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