Specifying the federation structure among application smart objevts by example through direct manipulations

Specifying the federation structure among application smart objevts by example through direct manipulations
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通过直接操作示例指定应用程序智能对象之间的联合结构

DOI:
10.1007/978-3-642-40140-4_4
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发表时间:
2013
期刊:
Communications in Computer and Inforamation Science, Springer
影响因子:
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通讯作者:
Yuzuru Tanaka
Yuzuru Tanaka
中科院分区:
--
文献类型:
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作者:
Jerremie Julia;Yuzuru Tanaka

文献摘要

相似文献

本文重点介绍了一种新的方法来管理智能对象(SO)或智能移动的设备的自动联邦的最后阶段。这种新方法将每个智能对象联邦建模为催化反应。每个反应都被建模为生物世界中有或没有调节开关的RNA(核糖核酸)复制。因此,可以将复杂的场景描述为催化反应网络,其中反应的结果,即联合的结果,可以用作另一反应的源材料或用作催化剂以使另一反应能够或不能进行。我们想要联合的SO称为应用程序智能对象。对于每个应用SO,我们将其相应类型的NSO(核苷酸SO)作为其标签附接。反应过程联合这些标记NSO,但不联合它们所连接的应用程序SO。一旦NSO被联合,反应的上下文就可以向它们发送一个程序,以将应用程序SO直接相互连接。在本文中,我们提出了一个解决方案,以产生组成这样一个程序的规则。我们还简要介绍了我们的系统的概念,通过其实施与Sun SPOT设备的证明。
This paper focuses on the final stage of a new approach to manage automatic federations of smart objects (SOs) or smart mobile devices. This new approach models each smart object federation as a catalytic reaction. Each reaction is modeled as an RNA (RiboNucleic Acid) replication with or without a regulation switch in the biological world. Thus, it is possible to describe a complex scenario as a catalytic reaction network where the result of a reaction, i.e. the result of a federation, may work as a source material for another reaction or as a catalyst to enable or disable another reaction. The SOs that we want to federate are called application smart objects. To each application SO, we attach an NSO (Nucleotide SO) of its corresponding type as its tag. The reaction process federate those tag NSOs, but not the application SOs they are attached to. Once the NSOs are federated, the context of the reaction can send them a program to connect the application SOs directly with each other. In this paper, we propose a solution to generate the rules composing such a program. We also briefly present a proof of concept of our system through its implementation with Sun SPOT devices.