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Advanced packaging for wireless sensor nodes in cyber-physical systems - impacts of multifunctionality and miniaturization on the environment

机译:网络 - 物理系统中无线传感器节点的先进包装 - 多功能性和小型化对环境的影响

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Advances in microsystem technology have led to an increasing trend of cyber physical system integration into industrial environments for prognostic health monitoring. Harsh environmental conditions require wireless sensor nodes (WSNs) that are robustness and reliable whilst meeting the requirements of miniaturization, functional integrity and energy efficiency at the same time. Moreover design and application of WSNs need to meet the target of an optimized trade-off between direct impacts associated with the life cycle of the electronics as well as indirect impacts triggered through the usage of electronics. In this contribution, functionally equivalent sensor designs are discussed that represent three evolutionary stages of electronics packaging. The most advanced sensor generation presented applies size-optimized routing, embedded active and passive devices and bare-die assembly. The results of a life-cycle based environmental assessment conducted for the three concepts of WSNs are presented. The study allows for the quantification and comparison of environmental impacts associated with the process of miniaturizing cyber physical system hardware by means of advanced packaging.
机译:微系统技术的进步导致网络物理系统融入工业环境的越来越趋势,以进行预后健康监测。苛刻的环境条件需要无线传感器节点(WSN),这是鲁棒性和可靠的,同时满足小型化,功能完整性和能效的要求。此外,WSNS的设计和应用需要满足与电子设备生命周期相关的直接冲击之间的优化权衡的目标,以及通过使用电子器件的使用间接影响。在这种贡献中,讨论了功能等同的传感器设计,其代表电子包装的三个进化阶段。提供的最先进的传感器生成适用于大小优化的路由,嵌入式主动和无源设备和裸模组件。提出了为WSN的三种概念进行的基于生命周期的环境评估的结果。该研究允许通过先进的封装来定量和比较与Cyber​​ Moxical System硬件小型化Cyber​​ Mevice System硬件的过程相关的环境影响。

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