In the wideband regime, the performance of many of the popular modulation schemes such as code division multiple access and orthogonal frequency division multiplexing falls quickly without channel state information. Obtaining the amount of channel information required for these techniques to work is costly and difficult, which suggests the need for schemes which can perform well without channel state information. In this work, we present one such scheme, called wideband time frequency coding, which achieves rates on the order of the additive white Gaussian noise capacity without requiring any channel state information. Wideband time frequency coding combines impulsive frequency shift keying with pulse position modulation, which allows for information to be encoded in both the transmitted frequency and the transmission time period. On the detection side, we propose a non-coherent decoder based on a square-law detector, akin to the optimal decoder for frequency shift keying based signals. The impacts of various parameters on the symbol error probability and capacity of wideband time frequency coding are investigated, and the results show that it is robust to shadowing and highly fading channels. When compared to other modulation schemes such as code division multiple access, orthogonal frequency division multiplexing, pulse position modulation, and impulsive frequency shift keying without channel state information, wideband time frequency coding achieves higher rates in the wideband regime, and performs comparably in smaller bandwidths.
翻译:在宽带制度下,许多流行调制方案(如代码司多存和正方位频率多功能调制)的性能在没有频道状态信息的情况下迅速下降。获取这些技术运作所需的频道信息量既昂贵又困难,这表明需要一些在没有频道状态信息的情况下运行良好的机制。在这项工作中,我们提出了一个这样的方案,称为宽带时间调频编码,它达到添加式白高尔西亚噪音能力排序的频率,而不需要任何频道状态信息。宽带时间调频编码将脉冲频率转换键与脉冲位置调制相结合,从而使得信息能够同时在传输频率和传输时间段进行编码。在检测方面,我们提议以平面法律检测器为基础,采用不兼容的解码器,类似于频率转换键盘信号的最佳解码。调查了各种参数对宽带时间调频调频调的符号误差概率和能力的影响,结果显示,在跟踪和高度淡化的脉冲定位中,使得信息能够同时在传输频率和传输时间段传输时间段期间进行加密。在探测方面,我们提议,在不进行其他频率调频调频段次的频率调,例如分级局,在调调调中,在调调调调调中,在调调调调时,在调调调调调调调时,在调调调调调调调调调调时,例如调调调调调调时,例如调调调调调调调调调调调调调调调调调调调调调时,在调时,例如调时,例如调时,在调时段。