针对STBC-OFDM信号盲识别中存在着识别所需样本数多、对频偏敏感和不适用于单接收天线等问题,提出一种基于FOLP(Fourth Order Lag Product)的识别方法.根据不同空时分组码元素的相关性,推导了接收信号的FOLP,构造了基于FOLP的峰值检测算...针对STBC-OFDM信号盲识别中存在着识别所需样本数多、对频偏敏感和不适用于单接收天线等问题,提出一种基于FOLP(Fourth Order Lag Product)的识别方法.根据不同空时分组码元素的相关性,推导了接收信号的FOLP,构造了基于FOLP的峰值检测算法.推导和仿真结果表明,该算法能够在单接收天线下运行,且不需要知道信道信息、噪声信息、调制信息以及OFDM块的起始位置;且该算法不受调制方式的影响,对时延、相位噪声和频率偏移鲁棒性能好,能够应用于认知无线电、频谱监控等工程领域中.展开更多
针对传统拍卖方法在动态频谱分配中的低效问题,本文提出了一种基于FADM(fast auction with multiple bands and multiple winners)算法的动态频谱分配方法.FADM算法将传统的多物品拍卖问题转化为整数型0/1背包问题,从而可用动态规划寻...针对传统拍卖方法在动态频谱分配中的低效问题,本文提出了一种基于FADM(fast auction with multiple bands and multiple winners)算法的动态频谱分配方法.FADM算法将传统的多物品拍卖问题转化为整数型0/1背包问题,从而可用动态规划寻求最佳的出清向量;新算法采用了保留价格和差异定价抑制共谋,且根据供求关系动态调整保留价格和竞标价格,兼顾了频谱分配的经济效益和社会效益.性能分析和计算机仿真结果表明,FADM算法可以使频谱有效利用率逼近实际需求率,同时尽可能提高分配收益.展开更多
A scenario where one 'dumb' radio and multiple cognitive radios communicating simultaneously with a common receiver is considered. In this paper, we derive an achievable rate region of the multiple-user cognitive mu...A scenario where one 'dumb' radio and multiple cognitive radios communicating simultaneously with a common receiver is considered. In this paper, we derive an achievable rate region of the multiple-user cognitive multiple-access channel (MUCMAC) under both additive white Gaussian noise (AWGN) channel and rayleigh fading channel, by using a combination of multiple user dirty paper coding (DPC) and superposition coding. Through cognition, it is assumed that the secondary users (SUs) are able to obtain the message of the primary user (PU) non-causally beforehand. Using this side information, the SUs can perform multiple user DPC to avoid the interference from the SU. Besides, the SUs can also allocate part of their transmit power to aid the PU, using superposition coding. Therefore, the capacity region of traditional multiple-access channel (MAC) can be enlarged. Moreover, some asymptotic results are shown as the number of SUs increases. In the AWGN case, it is illustrated that the maximum achievable rate of the PU grows logarithmically with the increase of the number of SUs, whereas in the Rayleigh case, we show that the cognitive gain will increase with the decreasing of the channel signal to noise ratio (SNR).展开更多
Spectrum sensing is an important part of cognitive radio systems to find spectrum hole for transmission which enables cognitive radio systems coexist with the authorized radio systems without harmful interference.In t...Spectrum sensing is an important part of cognitive radio systems to find spectrum hole for transmission which enables cognitive radio systems coexist with the authorized radio systems without harmful interference.In this paper,an improved cyclostationary feature detection method is proposed to reduce computational complexity without loss of good performance based on the optimal parameter selection strategy for choosing detection parameters of cyclic frequency and lag.Taking binary phase shift keying (BPSK) and quadrature phase shift keying (QPSK) signals as examples,the theoretical analyses are presented for choosing the optimal parameters.Simulation results are given to certify the correctness of the proposed parameter selection strategy and show the performance of the proposed method.展开更多
研究了认知无线电位置意识功能,重点讨论了自适应TOA(Time of Arrival)定位技术,推导了可采用Under-lay频谱接入定位方式的判决条件,提出了增加Underlay方式成功定位几率的措施。数值计算结果验证了提出的判决条件以及增加Underlay方式...研究了认知无线电位置意识功能,重点讨论了自适应TOA(Time of Arrival)定位技术,推导了可采用Under-lay频谱接入定位方式的判决条件,提出了增加Underlay方式成功定位几率的措施。数值计算结果验证了提出的判决条件以及增加Underlay方式成功传输几率的措施的有效性。展开更多
文摘针对STBC-OFDM信号盲识别中存在着识别所需样本数多、对频偏敏感和不适用于单接收天线等问题,提出一种基于FOLP(Fourth Order Lag Product)的识别方法.根据不同空时分组码元素的相关性,推导了接收信号的FOLP,构造了基于FOLP的峰值检测算法.推导和仿真结果表明,该算法能够在单接收天线下运行,且不需要知道信道信息、噪声信息、调制信息以及OFDM块的起始位置;且该算法不受调制方式的影响,对时延、相位噪声和频率偏移鲁棒性能好,能够应用于认知无线电、频谱监控等工程领域中.
文摘针对传统拍卖方法在动态频谱分配中的低效问题,本文提出了一种基于FADM(fast auction with multiple bands and multiple winners)算法的动态频谱分配方法.FADM算法将传统的多物品拍卖问题转化为整数型0/1背包问题,从而可用动态规划寻求最佳的出清向量;新算法采用了保留价格和差异定价抑制共谋,且根据供求关系动态调整保留价格和竞标价格,兼顾了频谱分配的经济效益和社会效益.性能分析和计算机仿真结果表明,FADM算法可以使频谱有效利用率逼近实际需求率,同时尽可能提高分配收益.
基金supported by the National Basic Research Program of China (2009CB320401)the National Natural Science Foundation of China (61101117)+2 种基金Research Funds for Doctoral Program of Higher Education of China (20090005110003)National Key Scientific and Technological Project of China (2010ZX03003-001, 2012ZX03004005-002)Fundamental Research Funds for the Central Universities (BUPT2012RC0112)
文摘A scenario where one 'dumb' radio and multiple cognitive radios communicating simultaneously with a common receiver is considered. In this paper, we derive an achievable rate region of the multiple-user cognitive multiple-access channel (MUCMAC) under both additive white Gaussian noise (AWGN) channel and rayleigh fading channel, by using a combination of multiple user dirty paper coding (DPC) and superposition coding. Through cognition, it is assumed that the secondary users (SUs) are able to obtain the message of the primary user (PU) non-causally beforehand. Using this side information, the SUs can perform multiple user DPC to avoid the interference from the SU. Besides, the SUs can also allocate part of their transmit power to aid the PU, using superposition coding. Therefore, the capacity region of traditional multiple-access channel (MAC) can be enlarged. Moreover, some asymptotic results are shown as the number of SUs increases. In the AWGN case, it is illustrated that the maximum achievable rate of the PU grows logarithmically with the increase of the number of SUs, whereas in the Rayleigh case, we show that the cognitive gain will increase with the decreasing of the channel signal to noise ratio (SNR).
基金the National Natural Science Founda-tion of China (Nos. 60802058 and 60832009)the SMC Young Teacher Sponsorship of Shanghai JiaotongUniversity
文摘Spectrum sensing is an important part of cognitive radio systems to find spectrum hole for transmission which enables cognitive radio systems coexist with the authorized radio systems without harmful interference.In this paper,an improved cyclostationary feature detection method is proposed to reduce computational complexity without loss of good performance based on the optimal parameter selection strategy for choosing detection parameters of cyclic frequency and lag.Taking binary phase shift keying (BPSK) and quadrature phase shift keying (QPSK) signals as examples,the theoretical analyses are presented for choosing the optimal parameters.Simulation results are given to certify the correctness of the proposed parameter selection strategy and show the performance of the proposed method.