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Intelligent Microchip Networks: An Agent-on-Chip Synthesis Frame work for the Design of Smart and Robust Sensor Networks

机译:智能微芯片网络:用于智能和强大的传感器网络设计的片上综合框架工作

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Sensorial materials consisting of high-density, miniaturized, and embedded sensor networks require new robust and reliable data processing and communication approaches. Structural health monitoring is one major field of application for sensorial materials. Each sensor node provides some kind of sensor, electronics, data processing, and communication with a strong focus on microchip-level implementation to meet the goals of miniaturization and low-power energy environments, a prerequisite for autonomous behaviour and operation. Reliability requires robustness of the entire system in the presence of node, link, data processing, and communication failures. Interaction between nodes is required to manage and distribute information. One common interaction model is the mobile agent. An agent approach provides stronger autonomy than a traditional object or remote-procedure-call based approach. Agents can decide for themselves, which actions are performed, and they are capable of flexible behaviour, reacting on the environment and other agents, providing some degree of robustness. Traditionally multi-agent systems are abstract programming models which are implemented in software and executed on program controlled computer architectures. This approach does not well scale to micro-chip level and requires full equipped computers and communication structures, and the hardware architecture does not consider and reflect the requirements for agent processing and interaction. We propose and demonstrate a novel design paradigm for reliable distributed data processing systems and a synthesis methodology and framework for multi-agent systems implementable entirely on microchip-level with resource and power constrained digital logic supporting Agent-On-Chip architectures (AoC). The agent behaviour and mobility is fully integrated on the micro-chip using pipelined communicating processes implemented with finite-state machines and register-transfer logic. The agent behaviour, interaction (communication), and mobility features are modelled and specified on a machine-independent abstract programming level using a state-based agent behaviour language (APL). With this APL a high-level agent compiler is able to synthesize a hardware model (RTL, VHDL), a software model (C, ML), or a simulation model (XML) suitable to simulate a multi-agent system using the SeSAm simulator framework. Agent communication is provided by a simple tuple-space database implemented on node level providing fault tolerant access of global data. A novel synthesis development kit (SynDK) based on a graph-structured database approach is introduced to support the rapid development of compilers and synthesis tools, used for example for the design and implementation of the APL compiler.
机译:由高密度,小型化和嵌入式传感器网络组成的感觉材料需要新的稳健和可靠的数据处理和通信方法。结构健康监测是感应材料应用的一个主要应用领域。每个传感器节点提供某种传感器,电子设备,数据处理和与微芯片级实施的强烈关注,以满足小型化和低功耗能量环境的目标,是自主行为和操作的先决条件。可靠性在节点,链路,数据处理和通信故障的存在下需要整个系统的鲁棒性。节点之间的交互需要管理和分发信息。一个常见的交互模型是移动代理。代理方法提供比传统对象或基于远程过程呼叫的方法更强的自主权。代理商可以自行决定,进行哪些行动,并且它们能够灵活的行为,对环境和其他代理的反应,提供一定程度的鲁棒性。传统上的多种代理系统是抽象编程模型,该模型在软件中实现并在程序控制的计算机架构上执行。这种方法对微芯片级别不当,需要完全配备的计算机和通信结构,并且硬件架构不考虑并反映代理处理和交互的要求。我们提出并展示了一种新颖的分布式数据处理系统的设计范式和用于多种代理系统的合成方法和框架,其完全在微芯片级,资源和功率受限的数字逻辑支持芯片架构(AOC)。代理行为和移动性在微芯片上完全集成了使用有限状态机和寄存器传输逻辑实现的流水线通信过程。代理行为,交互(通信)和移动功能是使用基于状态的代理行为语言(APL)在机器独立的抽象编程级别上建模和指定。使用此APL,高级代理编译器能够合成用于使用SESAM模拟器模拟多助理系统的硬件模型(RTL,VHDL),软件模型(C,ML)或仿真模型(XML)框架。代理通信由在节点级别实现的简单元组空间数据库提供,提供全局数据的容错访问。基于图形结构数据库方法的新型综合开发套件(Syndk)支持编译器和综合工具的快速发展,例如用于APL编译器的设计和实现。

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