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Addressing the Hidden Terminal Problem for Heterogeneous Coexistence Between TDM and CSMA Networks in White Space

机译:解决空白空间中TDM和CSMA网络异构共存的隐藏终端问题

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摘要

Cognitive radio (CR) technologies have led to several wireless standards (e.g., IEEE 802.11af and IEEE 802.22) that enable secondary networks to access the TV white-space (TVWS) spectrum. Different unlicensed wireless technologies with different PHY/MAC designs are expected to coexist in the same TVWS spectrum—we refer to such a situation as heterogeneous coexistence. The heterogeneity of the PHY/MAC designs of coexisting CR networks can potentially exacerbate the hidden terminal problem. This problem cannot be addressed by the conventional handshaking/coordination mechanism between two homogeneous networks employing the same radio access technology. In this paper, we present a coexistence protocol, called Spectrum Sharing for Heterogeneous Coexistence (SHARE), that mitigates the hidden terminal problem for the coexistence between two types of networks: one that employs a time-division-multiplexing-based MAC protocol and one that employs a carrier-sense-multiple-access-based MAC protocol. Specifically, SHARE utilizes beacon transmissions and dynamic quiet periods to avoid packet collisions caused by the hidden terminals. Our analytical and simulation results show that SHARE reduces the number of packet collisions and guarantees weighted fairness in partitioning the spectrum among the coexisting secondary networks.
机译:认知无线电(CR)技术已导致若干无线标准(例如,IEEE 802.11af和IEEE 802.22),使辅助网络能够访问电视空白(TVWS)频谱。预期具有不同PHY / MAC设计的不同非授权无线技术将在同一TVWS频谱中共存-我们将这种情况称为异构共存。共存CR网络的PHY / MAC设计的异质性可能会加剧隐藏终端问题。该问题不能通过采用相同无线电接入技术的两个同构网络之间的常规握手/协调机制来解决。在本文中,我们提出了一种共存协议,称为异构共存频谱共享(SHARE),它缓解了两种类型网络之间共存的隐藏终端问题:一种使用基于时分多路复用的MAC协议,另一种使用它采用了基于载波侦听多路访问的MAC协议。具体而言,SHARE利用信标传输和动态静默周期来避免隐藏终端导致的数据包冲突。我们的分析和仿真结果表明,SHARE减少了数据包冲突的数量,并保证了在共存的辅助网络之间分配频谱时的加权公平性。

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