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首页> 外文期刊>IEEE systems journal >Energy-Efficient Hybrid CCC-Based MAC Protocol for Cognitive Radio Ad Hoc Networks
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Energy-Efficient Hybrid CCC-Based MAC Protocol for Cognitive Radio Ad Hoc Networks

机译:认知无线电自组织网络中基于节能混合CCC的MAC协议

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摘要

Transmitter power consumption and application throughput in cognitive radio-medium access control (CR-MAC) protocol has direct impact on control message overhead and common control channel (CCC). Hence, the design of CCC in CR-MAC plays a pivotal role in selecting an energy-efficient channel path for enhanced throughput. State-of-the-art CR-MAC protocols design CCC in in-band or out-of-band overlay spectrum bands. With in-band, imperfect node synchronization due to per-hop and group CCC coverage leads to multichannel hidden terminal and longer network access delays. Global coverage with dedicated out-of-band CCC is subject to saturation and intruder attacks, which results in single point of network failure and increased power consumption. To overcome existing problems, an energy-efficient hybrid CCC based CR-MAC protocol with omnidirectional control and directional data transmission is proposed to reduce power consumption due to link access overhead, multichannel hidden terminal, deafness, and spectrum mobility. In this paper, antenna index numbers through Global Positioning System and angle-of-arrival estimation are used for directional data transmission, whereas hybrid CCC is used to avoid interference due to multichannel hidden terminals. Experimental results reveal that the proposed hybrid CCC-MAC with directional antennas has increased network throughput and reduced transmit power consumption when compared with existing in/out-of-band omnidirectional CCC-based CR-MAC protocols.
机译:认知无线电介质访问控制(CR-MAC)协议中的发射机功耗和应用吞吐量直接影响控制消息开销和公共控制信道(CCC)。因此,CR-MAC中CCC的设计在选择节能通道路径以提高吞吐量方面起着关键作用。最新的CR-MAC协议在带内或带外覆盖频谱带中设计CCC。在带内,由于每跳和组CCC覆盖而导致的不完美节点同步会导致多通道隐藏终端和更长的网络访问延迟。专用带外CCC的全球覆盖会遭受饱和和入侵者的攻击,这会导致单点网络故障并增加功耗。为了克服现有的问题,提出了一种具有全向控制和定向数据传输的基于节能混合CCC的CR-MAC协议,以减少由于链路访问开销,多通道隐藏终端,耳聋和频谱移动性引起的功耗。在本文中,通过全球定位系统和到达角估计的天线索引号用于定向数据传输,而混合CCC用于避免由于多信道隐藏终端而造成的干扰。实验结果表明,与现有的带内/带外全向基于CCC的CR-MAC协议相比,所提出的带有定向天线的混合CCC-MAC具有更高的网络吞吐量和降低的发射功率消耗。

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