无线供电通信网络中的分布式调度:协议设计与性能分析

Suzhi Bi, Y. Zhang, Rui Zhang
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引用次数: 16

摘要

无线供电通信网络(WPCN)是一种利用射频(RF)无线能量传输(WET)技术为无线设备(wd)的信息传输提供动力的新型网络模式。当能量和信息在同一频段内传输时,传输调度是设计的一个主要问题,以避免干扰,达到较高的通信性能。WPCN中常用的集中式调度方法控制信令开销大,不适合由大量随机位置、动态运行的wdn组成的无线网络。为了解决这一问题,本文提出了一种WPCN中能量和信息传输的分布式调度协议。具体来说,我们允许即将耗尽电池的WD广播能量请求嗡嗡声(ERB),这将从其相关的混合接入点(HAP)触发WET为电池充电。如果没有发送ERB, WDs将竞争使用传统的p-persistent CSMA(载波感应多址)向HAP传输数据。特别地,我们提出了一种基于能量解耦特性的能量排队模型来推导吞吐量性能。通过在实际网络参数下的模拟验证了我们的分析,结果表明分布式调度协议具有良好的吞吐量性能,并揭示了一些有趣的设计见解,这些见解不同于传统的基于争用的通信网络,假设WDs具有无限的能源供应。
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Distributed scheduling in wireless powered communication network: Protocol design and performance analysis
Wireless powered communication network (WPCN) is a novel networking paradigm that uses radio frequency (RF) wireless energy transfer (WET) technology to power the information transmissions of wireless devices (WDs). When energy and information are transferred in the same frequency band, a major design issue is transmission scheduling to avoid interference and achieve high communication performance. Commonly used centralized scheduling methods in WPCN may result in high control signaling overhead and thus are not suitable for wireless networks constituting a large number of WDs with random locations and dynamic operations. To tackle this issue, we propose in this paper a distributed scheduling protocol for energy and information transmissions in WPCN. Specifically, we allow a WD that is about to deplete its battery to broadcast an energy request buzz (ERB), which triggers WET from its associated hybrid access point (HAP) to recharge the battery. If no ERB is sent, the WDs contend to transmit data to the HAP using the conventional p-persistent CSMA (carrier sensing multiple access). In particular, we propose an energy queueing model based on an energy decoupling property to derive the throughput performance. Our analysis is verified through simulations under practical network parameters, which demonstrate good throughput performance of the distributed scheduling protocol and reveal some interesting design insights that are different from conventional contention-based communication network assuming the WDs are powered with unlimited energy supplies.
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Keynote speaker Keynote speaker Ad-Hoc, Mobile, and Wireless Networks: 19th International Conference on Ad-Hoc Networks and Wireless, ADHOC-NOW 2020, Bari, Italy, October 19–21, 2020, Proceedings Retraction Note to: Mobility Aided Context-Aware Forwarding Approach for Destination-Less OppNets Ad-Hoc, Mobile, and Wireless Networks: 18th International Conference on Ad-Hoc Networks and Wireless, ADHOC-NOW 2019, Luxembourg, Luxembourg, October 1–3, 2019, Proceedings
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