Cellular Automata

Cellular Automata
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DOI:
10.1007/3-540-45830-1
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发表时间:
2002
影响因子:
3.2
通讯作者:
J. V. Leeuwen;Stefania Bandini;B. Chopard;Marco Tomassini;J. V. Leeuwen
J. V. Leeuwen;Stefania Bandini;B. Chopard;Marco Tomassini;J. V. Leeuwen
中科院分区:
工程技术2区
文献类型:
--
作者:
J. V. Leeuwen;Stefania Bandini;B. Chopard;Marco Tomassini;J. V. Leeuwen

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本卷收集了在第九届元胞自动机研究与工业国际会议(ACRI 2010)上发表的论文,该会议于2010年9月21日至24日在阿斯科利皮切诺(意大利)举行。自1994年以来,ACRI会议一直为学术界和工业界的科学家和创新经理提供两年一次的科学会议,以表达和讨论他们对当前和未来趋势,挑战以及艺术,生物,化学,通信,生态,经济,工程,网络,物理,社会科学和交通控制领域各种问题的最新解决方案的观点。ACRI 2010由米兰-比可卡大学复杂系统和人工智能(CSAI)研究中心组织,作为一个论坛,展示和讨论专业成果,以及对元胞自动机方法及其应用的发展的一般贡献。元胞自动机是研究时空系统的一种非常有力的方法,在这种系统中,复杂的现象是由许多简单的局部相互作用建立起来的。ACRI系列会议最初是在意大利举办的(1994年在伦德的ACRI, 1996年在米兰的ACRI, 1998年在的里雅斯特的ACRI),在转移到其他欧洲和国际环境之后,今年又回到了意大利:2000年在卡尔斯鲁厄(德国)的ACRI, 2002年在日内瓦(瑞士)的ACRI, 2004年在阿姆斯特丹(荷兰)的ACRI, 2006年在佩皮尼昂(法国)的ACRI, 2008年在横滨(日本)的ACRI。为了给出细胞自动机的理论和应用方面都有助于该领域发展的观点,本书反映了会议的结构,将74篇论文分为两个主要部分。第一部分收集了作为主要会议一部分的论文,并根据六个主要主题组织:(1)元胞自动机的理论结果,(2)元胞自动机的建模和仿真,(3)元胞自动机的动力学,控制和同步,(4)元胞自动机的编码和密码学,(5)元胞自动机和网络,以及(6)基于元胞自动机的硬件。该卷的第二部分致力于在ACRI 2010年理论进展研讨会期间提出的贡献,特别是异步元胞自动机(主席:Alberto Dennunzio, Enrico Formenti和Marco Tomassini),以及具有挑战性的元胞自动机应用环境:人群和CA(第三版,主席:Sara Manzoni和Shin Morishita),交通和CA(主席:Katsuhiro Nishinari和Andreas Schadschneider),以及国际自然计算研讨会(主席:Ferdinand Peper和Hiroshi Umeo)。从最初的想法到它的实施,许多人对ACRI 2010的成功和这本书的创作做出了贡献。我们首先要感谢所有提交他们作品的科学家,以及所有的项目
This volume collects the papers selected for presentation at the 9th International Conference on Cellular Automata for Research and Industry (ACRI 2010), held in Ascoli Piceno (Italy), September 21-24, 2010. ACRI conferences have been offering since 1994 a biennial scientific meeting to both scientists and innovation managers in academia and industriy to express and discuss their viewpoints on current and future trends, challenges, and stateof-the-art solutions to various problems in the fields of arts, biology, chemistry, communication, ecology, economy, engineering, networks, physics, social science, and traffic control. ACRI 2010 was organized by the Complex Systems and Artificial Intelligence (CSAI) research center of the University of Milano-Bicocca as a forum for the presentation and discussion of specialized results as well as general contributions to the growth of the cellular automata approach and its application. Cellular automata represent a very powerful approach to the study of spatio-temporal systems where complex phenomena are built up out of many simple local interactions. The ACRI conference series was first organized in Italy (ACRI 1994 in Rende, ACRI 1996 in Milan, and ACRI 1998 in Trieste), and after having moved to other European and international settings, this year came back to Italy: ACRI 2000 in Karlsruhe (Germany), ACRI 2002 in Geneva (Switzerland), ACRI 2004 in Amsterdam (The Netherlands), ACRI 2006 in Perpignan (France), and ACRI 2008 in Yokohama (Japan). In order to give a perspective in which both theoretical and applicational aspects of cellular automata contribute to the growth of the area, this book mirrors the structure of the conference, grouping the 74 papers into two main parts. The first part collects papers presented as part of the main conference and organized according to six main topics:(1) theoretical results on cellular automata,(2) modeling and simulation with cellular automata,(3) CA dynamics, control and synchronization,(4) codes and cryptography with cellular automata,(5) cellular automata and networks, and (6) CA-based hardware. The second part of the volume is dedicated to contributions presented during the ACRI 2010 workshops on theoretical advances, specifically Asynchronous Cellular Automata (chairs: Alberto Dennunzio, Enrico Formenti, and Marco Tomassini), and challenging application contexts for cellular automata: Crowds and CA (3rd edition, chairs: Sara Manzoni and Shin Morishita), Traffic and CA (chairs: Katsuhiro Nishinari and Andreas Schadschneider), and the International Workshop of Natural Computing (chairs: Ferdinand Peper and Hiroshi Umeo). Many people contributed to the success of ACRI 2010 and to the creation of this volume, from the initial idea to its implementation. Our first acknowledgement is to all the scientists that submitted their works, and to all Program