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Workflow enactment based on a chemical metaphor

机译:基于化学比喻的工作流制定

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Executing workflows on large-scale heterogeneous distributed computing systems is a challenging task. Albeit there have been many well elaborated approaches, they are often motivated by a certain class of applications and focus on some implementation specific problems. The work presented in this paper aimed at establishing a highly abstract coordination model for distributed workflow enactment where decentralized control, autonomy, adaptation to high dynamics and partial lack of information are of primary concerns. The model is based on a nature metaphor and envisioned as a chemical reaction where molecules react autonomously according to local and actual conditions. The execution model of such chemical workflow enactment is formalized using the /spl gamma/-calculus. In the /spl gamma/-calculus control, scheduling, dependencies, errors and the state of the computation are all represented in a single uniform declarative formalism that has a mathematically founded clear semantics. The paper shows that the abstract coordination model expressed in /spl gamma/-calculus is able to grasp all aspects of such a chemical enactment, provides a more complex and adaptive framework than most current approaches, and actual realizations may be founded on it.
机译:在大规模异构分布式计算系统上执行工作流是一个具有挑战性的任务。尽管已经有许多精细的方法,但它们通常由某种阶级的应用程序产生动力,并专注于一些特定问题。本文提出的工作旨在为分布式工作流制定建立高度抽象的协调模型,其中分散的控制,自治,适应高动态和部分缺乏信息都是主要问题。该模型基于自然隐喻,并设想为化学反应,其中分子根据局部和实际条件自主反应。使用/ SPLγ/ -Calcululululm形式化这种化学工作流制定的执行模型。在/ spl伽马/ - 伽马属/ -calculatuly控制,调度,依赖关系,错误和计算状态都以单个均匀的声明性形式主义表示,具有数学上创立的清晰语义。本文表明,在/ SPLγ/ -Calcululululul中表达的抽象协调模型能够掌握这种化学制作的所有方面,提供比大多数电流方法更复杂和自适应框架,并且可以在其上建立实际的实现。

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