首页> 外文会议>IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks >Feasibility study on application of impulse-UWB for control channel in Cognitive Radio networks
【24h】

Feasibility study on application of impulse-UWB for control channel in Cognitive Radio networks

机译:脉冲超宽带技术在认知无线电网络控制信道中应用的可行性研究

获取原文

摘要

Cognitive Radio (CR) will enhance the efficiency in spectrum usage by re-using temporally unused licensed spectrum. A promising transmission scheme to utilize even very fragmented and fast changing spectrum is Non-Contiguous OFDM (NCOFDM). Unfortunately, NC-OFDM requires tight synchronization between sender and receiver, i.e. the receiver needs perfect up-to-date knowledge about the set of subcarriers being used by the NC-OFDM sender. Therefore, a reliable and always available Control Channel (CC) is crucial for signaling the spectrum allocation information. Although, underlay Impulse-Radio Ultra-WideBand (IR-UWB) meets the theoretical requirements for such a CC in CR networks, i.e. communication range of up to 1km on a sufficient high data rate, there is a lack of practical studies of IR-UWB in real world environments, especially with respect to co-existence with NC-OFDM as in the envisioned CR multi-technology station. In this paper we present results of measurements in our state-of-the-art IR-UWB testbed. We show that IR-UWB can reach the required communication range of a few hundreds of meters in unobstructed as well as slightly obstructed Lineof- Sight propagation only. Although, IR-UWB is a wideband technology we show that it is severely affected by narrowband interference from close proximity sources which is typically the case in the envisioned multi-technology stations. Such a mutual disturbance can be mitigated by increasing the spatial separation between both air interfaces, orthogonalization in time or using only those parts of the radio spectrum for NC-OFDM which are outside the main IR-UWB transmission mask.
机译:认知无线电(CR)将通过重新使用暂时未使用的许可频谱来提高频谱使用效率。利用甚至非常零碎和快速变化的频谱的有前途的传输方案是非连续OFDM(NCOFDM)。不幸的是,NC-OFDM需要在发送方和接收方之间进行严格的同步,即,接收方需要有关NC-OFDM发送方正在使用的子载波集的最新信息。因此,可靠且始终可用的控制信道(CC)对于用信号发送频谱分配信息至关重要。尽管底层脉冲无线超宽带(IR-UWB)满足了CR网络中此类CC的理论要求,即在足够高的数据速率下通信距离可达1 km,但仍缺乏IR-U的实践研究。在现实环境中的UWB,尤其是在预想的CR多技术站中与NC-OFDM共存的情况。在本文中,我们介绍了我们最新的IR-UWB测试台中的测量结果。我们证明,IR-UWB只能在无障碍以及视线传播稍微受阻的情况下达到几百米的所需通信范围。尽管IR-UWB是一种宽带技术,但我们证明它受到近距离源的窄带干扰的严重影响,这在设想的多技术站中通常是这种情况。可以通过增加两个空中接口之间的空间间隔,时间上的正交化或仅使用NC-OFDM的无线电频谱中位于主IR-UWB传输掩码之外的那些部分来缓解这种相互干扰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号