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VLSI design of energy efficient computational centric smart objects for IoT

机译:VLSI为IOT的节能计算中心智能对象设计

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Traditional standalone embedded system and its computational elements firmly connect with physical entities such as Input-Output devices and sensor networks in IoT applications such as medical monitoring, smart grids, smart cities, environmental monitoring systems which are gaining attraction among institutions and industries. A huge quantity of sensors are added to the IoT, and the processing of a large amount of data coming from Input-Output devices and sensor networks increases the energy consumption. To have more efficiency, the mobility of IoT based system requires low energy consumption. Smart devices perform the data offloading to external devices with increased communication effort, and this effort contribute to the overall power consumption of the smart devices. This power hungry nature of the communication infrastructure and computational resources using cloud computing is not very much suitable to design the future computational system. This nature changed the trend to shift the smartness of the things more adjacent to the things themselves and network edge (FoG) instead of towards the cloud. This shift can improve the computing capacity of the smart objects and limit energy consumption. This paper aims at exploring emerging approaches, ideas, and contributions to address the challenges in the design of energy efficient computational centric smart objects for IoT. A proposed energy-efficient Network on Chip (NoC) architecture for embedded high-performance computing is provided.
机译:传统的独立嵌入式系统及其计算元素牢固地与物理实体连接,如IOT应用中的输入 - 输出设备和传感器网络,如医疗监测,智能电网,智能城市,环境监测系统,这些系统在机构和行业中获得的吸引力。将大量传感器添加到IOT中,并且来自输入输出设备和传感器网络的大量数据的处理增加了能量消耗。为了更有效率,基于物联网系统的移动性需要低能耗。智能设备通过增加的通信工作,将数据卸载到外部设备,这项工作有助于智能设备的整体功耗。这种电力饥饿的通信基础设施和使用云计算的计算资源的性质并不大得多适合设计未来的计算系统。这种性质改变了将事物更邻近的东西和网络边缘(雾)而不是朝向云的趋势。这种转变可以提高智能对象的计算能力并限制能量消耗。本文旨在探索新出现的方法,想法和贡献,以解决为IOT的节能计算中心智能对象设计的挑战。提供了一种用于嵌入式高性能计算的芯片(NOC)架构上提出的节能网络。

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