Energy-efficient Design of Wireless Sensor Mote using Mobile-Edge Computing and Novel scheduling mechanism for self-sustainable Next-gen Cyber Physical System

Ayaskanta Mishra, A. K. Ray
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引用次数: 2

Abstract

The recent developments in the field of Internet of Things (IoT) has opened up vast prospects for design, development and deployment of Next-generation Cyber Physical System (NG-CPS). The proposed NG-CPS would have advanced features and functionalities to be future ready for inter-connecting physical-realm with cyber-realm. The vision is to achieve intelligent next-gen IoT-based system by harnessing all key technology enablers like modern low-power and smarter embedded system with support for 5G/6G and beyond wireless network integration to conventional CPS with better and smarter algorithms. In this paper, we have proposed an Energy-efficient self-sustainable wireless sensor mote design for such envisioned NG-CPS. The idea is to split the computational framework of NG-CPS using a Mobile Edge Computing (MEC). Instead of sending real-time raw sensor data to cloud, a Store-Process-Then-Forward (SPTF) mechanism is implemented on Edge device to reduce the wireless trans-receiver duty-cycle hence reducing the energy requirement of sensor mote. Additionally, integrating a solar powered energy harvester to make the wireless sensor mote completely self-reliance in energy requirement. The proposed novel algorithm is validated with help of hardware prototyping and the results shows 720 Joules of energy saving with a consumption of only 700 mW considering 80% power efficiency.
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基于移动边缘计算和新调度机制的下一代网络物理系统节能设计
物联网(IoT)领域的最新发展为下一代网络物理系统(NG-CPS)的设计、开发和部署开辟了广阔的前景。拟议的NG-CPS将具有先进的特性和功能,为将来连接物理领域和网络领域做好准备。愿景是通过利用所有关键技术,如支持5G/6G的现代低功耗和更智能的嵌入式系统,以及超越无线网络与传统CPS的集成,以更好、更智能的算法,实现基于物联网的智能下一代系统。在本文中,我们为这种设想的NG-CPS提出了一种节能、自我可持续的无线传感器模块设计。其想法是使用移动边缘计算(MEC)拆分NG-CPS的计算框架。在Edge设备上实现了存储-处理-转发(SPTF)机制,而不是将实时原始传感器数据发送到云端,以减少无线收发占空比,从而降低传感器端口的能量需求。此外,集成了太阳能能量收集器,使无线传感器在能量需求上完全自力更生。通过硬件样机验证了所提出的新算法,结果表明,考虑到80%的功率效率,在仅消耗700 mW的情况下,节省了720焦耳的能量。
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