Department of Computer Science and Information Engineering, Aletheia University, New Taipei 25103, Taiwan.
Sensors (Basel). 2023 Mar 24;23(7):3438. doi: 10.3390/s23073438.
Wireless sensor networks (WSNs) have wide applicability in services used in daily life. However, for such networks, limited energy is a critical issue. The efficiency of a deployed sensor network may be subject to energy supply. Wireless rechargeable sensor networks have recently been proposed and discussed. Most related studies have involved applying static rechargeable sensors to an entire rechargeable environment or having mobile chargers patrol the environment to charge sensors within it. For partially rechargeable environments, improving the recharge efficiency and extending the lifetime of WSNs are considerable challenges. Scientists have devoted attention to energy transmission technologies and mobile sensor network (MSN) applications. In this paper, we propose a flexible charging protocol in which energy can be transmitted from certain energy supply regions to other regions in an MSN. Mobile rechargeable sensors are deployed to monitor the environment. To share energy in a certain region, the sensors move to replenish their energy and transmit energy to sensors outside the energy supply region. The efficiency of the proposed protocol is also discussed in the context of various situations. The evaluation results suggest that the flexible protocol is more efficient than other charging protocols in several situations.
无线传感器网络(WSN)在日常生活中使用的各种服务中具有广泛的适用性。然而,对于这样的网络来说,能量有限是一个关键问题。部署的传感器网络的效率可能受到能量供应的影响。最近已经提出并讨论了无线可充电传感器网络。大多数相关研究都涉及将静态可充电传感器应用于整个可充电环境,或者使用移动充电器在环境中巡逻以对其中的传感器进行充电。对于部分可充电环境,提高充电效率和延长 WSN 的寿命是相当大的挑战。科学家们已经关注能量传输技术和移动传感器网络(MSN)的应用。在本文中,我们提出了一种灵活的充电协议,其中能量可以从某些能源供应区域传输到 MSN 中的其他区域。移动可充电传感器被部署来监测环境。为了在某个区域共享能量,传感器会移动以补充能量,并将能量传输到能源供应区域之外的传感器。还讨论了该协议在各种情况下的效率。评估结果表明,在几种情况下,灵活协议比其他充电协议更有效。