Self-Adaptation for Robustness and Cooperation in Holonic Multi-Agent Systems

Self-Adaptation for Robustness and Cooperation in Holonic Multi-Agent Systems
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DOI:
10.1007/978-3-642-03722-1_11
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发表时间:
2009-08
期刊:
Trans. Large Scale Data Knowl. Centered Syst.
影响因子:
--
通讯作者:
P. Leitão;P. Valckenaers;Emmanuel Adam
P. Leitão;P. Valckenaers;Emmanuel Adam
中科院分区:
其他
文献类型:
--
作者:
P. Leitão;P. Valckenaers;Emmanuel Adam

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本文件反映了2008年10月在威尼斯举行的阿拉伯叙利亚共和国区域合作研讨会的讨论情况。本次研讨会讨论了自组织和自适应系统的背景下,在子整体多智能体系统的鲁棒性和合作。本文首先介绍了子整体系统的基本原理。子整体系统揭示了自己作为“人造法则”:在要求严格且动态的环境中,所有更大的系统都将是子整体的。接下来,它解决了子整体系统的鲁棒性,包括它与自组织和自适应的关系。这些自 * 系统确实能够提供上级鲁棒性。第三,它解决了合弄和合弄系统中的合作,包括其与单个合弄的自治性的关系。合作对霍隆施加了限制,从而增加了它生存和成功的机会。
This paper reflects a discussion at the SARC workshop, held in Venice, October 2008. This workshop addresses robustness and cooperation in holonic multi-agent systems within a context of self-organizing and self-adaptive systems. The paper first presents the basic principles underlying holonic systems. The holonic system reveals itself as a ‘law of the artificial’: in a demanding and dynamic environment, all the larger systems will be holonic. Next, it addresses robustness in holonic systems, including its relationship to self-organization and self-adaptation. These self-* systems indeed are capable of delivering superior robustness. Third, it addresses cooperation in holons and holonic systems, including its relationship with the autonomy of the individual holons. Cooperation imposes constraints on a holon such that its chances of survival and success increase.