This paper focuses on the spatial-spectral terahertz (THz) networks, where transmitters equipped with the leaky-wave antennas send information to their receivers at the THz frequency bands. As a directional and nearly planar antenna, leaky-wave antenna allows for information transmissions with narrow beams and high antenna gains. The conventional large antenna arrays are confronted with challenging issues such as scaling limits and path discovery in the THz frequencies. Therefore, this work exploits the potential of leaky-wave antennas in the dense THz networks, to establish low-complexity THz links. By addressing the propagation angle-frequency coupling effects, the transmission rate is analyzed. The results show that leaky-wave antenna is efficient for achieving high-speed transmission rate and the co-channel interference management is not necessary when the THz transmitters with large subchannel bandwiths are not extremely dense. A simple subchannel allocation solution is proposed, which enhances the transmission rate compared with the same number of subchannels with equal allocation of frequency band. After subchannel allocation, a low-complexity power allocation method is proposed to improve the energy efficiency.
翻译:本文侧重于空间光谱长距天线(THz)网络,在这些网络中,配备了泄漏波天线的发射机向Thz频率波段接收器发送信息。作为方向和近近平射线天线,泄漏波天线能够以窄波束和高天线增益的方式传送信息。常规大型天线阵列面临一些具有挑战性的问题,如Thz频率的缩放限制和路径发现等。因此,这项工作利用了密集的Thz网络中泄漏波天线的潜力,建立了低兼容度THz链路连接。通过处理传播角频率连接效应,对传输率进行了分析。结果显示,泄漏波天线对于实现高速传输速度和高射速干扰管理是有效的,当THz发射机带有大型子波带且不十分密集时,不需要联合通道干扰管理。提出了一个简单的分流网配置解决方案,与同样数量的频率波段子网相比,可以提高传输率。在子波段分配后,建议采用低分辨率分配方法。