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Cyber Biosphere for Future Embedded Systems

机译:用于未来嵌入式系统的网络生物圈

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Future Embedded Systems are heading into a degree of complexity which is far beyond today's level. As most technical artifacts will be interconnected in some sense ("Internet of Things") Embedded Systems of the future cannot be treated as isolated entities any longer. Two major tendencies to cope with this challenge can be observed. The first one takes its inspiration from the technical roots of Embedded Systems. They are looked at from their technical nature but the traditional boundaries of Embedded Systems, especially to consider them as isolated systems are overcome. This approach became well known under the name "Cyber Physical Systems (CPS)". The second approach observes the existence of highly successful and relatively stable systems in form of our biosphere. So it seems to be wise to take inspirations from the achievement of nature. This approach became rather popular under the term "Biologically Inspired Systems" or "Organic Computing". In this paper we will concentrate on the latter attempt to build the highly complex, highly sophisticated Embedded Systems of the future. Inspirations from ant colonies, from the hormone system, and from the immune system will shortly be discussed using specific examples. Some comparisons with the CPS approach will be made as well.
机译:未来的嵌入式系统正在进行一定程度的复杂性,远远超过今天的水平。由于大多数技术人员将在某种意义上互连(“物联网”)未来的嵌入式系统不能再被视为孤立的实体。可以观察到这项挑战的两个主要趋势。第一个从嵌入式系统的技术根源中获取它的灵感。他们从他们的技术性质看,但嵌入式系统的传统界限,特别是克服了孤立的系统。这种方法在名称“网络物理系统(CPS)”下变得众所周知。第二种方法观察到以我们的生物圈形式存在高度成功和相对稳定的系统。因此,从实现自然中获取灵感似乎是明智的。这种方法在“生物学启发系统”术语或“有机计算”中变得相当受欢迎。在本文中,我们将专注于后一种试图建立高度复杂,高度复杂的未来嵌入式系统。从激素体系和免疫系统中,从蚁群中的灵感很快就使用具体实例讨论。将制作与CPS方法的一些比较。

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