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An Efficient EH-WSN Energy Management Mechanism 被引量:7
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作者 Yang Zhang Hong Gao +1 位作者 Siyao Cheng Jianzhong Li 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2018年第4期406-418,共13页
An Energy-Harvesting Wireless Sensor Network (EH-WSN) depends on harvesting energy from the environment to prolong network lifetime. Subjected to limited energy in complex environments, an EH-WSN encounters difficul... An Energy-Harvesting Wireless Sensor Network (EH-WSN) depends on harvesting energy from the environment to prolong network lifetime. Subjected to limited energy in complex environments, an EH-WSN encounters difficulty when applied to real environments as the network efficiency is reduced. Existing EH-WSN studies are usually conducted in assumed conditions in which nodes are synchronized and the energy profile is knowable or calculable. In real environments, nodes may lose their synchronization due to lack of energy. Furthermore, energy harvesting is significantly affected by multiple factors, whereas the ideal hypothesis is difficult to achieve in reality. In this paper, we introduce a general Intermittent Energy-Aware (lEA) EH-WSN platform. For the first time, we adopted a double-stage capacitor structure to ensure node synchronization in situations without energy harvesting, and we used an integrator to achieve ultra-low power measurement. With regard to hardware and software, we provided an optimized energy management mechanism for intermittent functioning. This paper describes the overall design of the lEA platform, and elaborates the energy management mechanism from the aspects of energy management, energy measurement, and energy prediction. In addition, we achieved node synchronization in different time and energy environments, measured the energy in reality, and proposed the light weight energy calculation method based on measured solar energy. In real environments, experiments are performed to verify the high performance of lEA in terms of validity and reliability. The lEA platform is shown to have ultra-low power consumption and high accuracy for energy measurement and prediction. 展开更多
关键词 energy harvesting wsn energy efficiency energy measurement synchronous wakeup
原文传递
向环境采集能量的WSN中的自适应周期机会路由算法
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作者 刘云 高思聪 《重庆大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第4期159-164,171,共7页
如何让可以采集能量的节点充分利用环境能量,从而提高整个网络持续高效工作的能力是在能量采集无线传感网中的关键问题。目前的研究主要集中在如何均衡分配可进行能量采集的节点的能量,从而在提高节点寿命的基础上,实现网络寿命延长,但... 如何让可以采集能量的节点充分利用环境能量,从而提高整个网络持续高效工作的能力是在能量采集无线传感网中的关键问题。目前的研究主要集中在如何均衡分配可进行能量采集的节点的能量,从而在提高节点寿命的基础上,实现网络寿命延长,但是仍然存在环境能量变化的不确定性导致的风险。笔者提出了自适应周期机会路由算法,首先对节点进行地理分区,再分配优先级,最后进行优化后路由处理。仿真结果表明,该算法能实现对环境能量更加高效的利用,并能有效提升网络的吞吐量和网络效率。 展开更多
关键词 能量采集无线传感网 自适应周期机会路由 能量管理 有效吞吐量和效率
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