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引用次数: 2

摘要

无线网络是一种计算机网络,在网络上的各种设备之间进行通信或数据交换而不使用电缆。通过具有无线接入点(AP)而不是以太网交换机的无线网络连接客户端。无线能量传输(WET)技术的最新进展使各种工程应用具有实现的潜力。支持rf的WET提供了一种称为无线供电通信(WPC)的解决方案。WPC技术通过发射机为无线设备供电,以提供不间断的、恒定的能量。WET技术可以用来给设备中的电池充电,而不需要有线连接。在WET技术中,接收器从远离射频信号的地方获取能量。接收器将接收到的能量转换为直流电信号并存储到电池中。在SWIPT技术中,能量和信息通过混合接入点(HAP)均匀地传输到多个接收器。在源端、目标端设计中采用能量权衡方法,平衡了信息解码和能量收集的表现。在WPCN技术中,所有的无线设备都利用收集到的能量来传输信息并相互通信。它在一个双进程收集然后传输协议下运行。
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Energy harvest and transfer technology in wireless networks
Wireless network is a type of computer networks where communication or data exchange among various devices on the network are carried out without the use of cables. Connecting clients is through a wireless network having a wireless Access Point (AP) instead of an Ethernet switch. Recent advancements in Wireless Energy Transfer (WET) technologies are enabling various engineering applications with potential implementation. RF-enabled WET provide a solution called Wireless Powered Communication (WPC). WPC technique is used to power the wireless devices by transmitter to offer uninterrupted, constant energy. WET technology can be utilized to charge the batteries in the equipment without the need for a wired connection. In WET technology, receivers harvest power distantly from RF signals. The receiver change the received energy to Direct Current signal and stores into battery. In SWIPT technology, both energy and information equally transmits to the multiple receivers by using Hybrid Access Point(HAP). HAP include a energy trade off method together in source, destination designs to equilibrium the Information Decoding and Energy Collecting presentation. In WPCN technology, all wireless devices transmits the information and communicates with each other by using the harvested energy. It operates beneath a two process collect then transmit protocol.
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