This paper develops a 3GPP-inspired design for the in-band-full-duplex (IBFD) integrated access and backhaul (IAB) networks in the frequency range 2 (FR2) band, which can enhance the spectral efficiency (SE) and coverage while reducing the latency. However, the self-interference (SI), which is usually more than 100 dB higher than the signal-of-interest, becomes the major bottleneck in developing these IBFD networks. We design and analyze a subarray-based hybrid beamforming IBFD-IAB system with the RF beamformers obtained via RF codebooks given by a modified Linde-Buzo-Gray (LBG) algorithm. The SI is canceled in three stages, where the first stage of antenna isolation is assumed to be successfully deployed. The second stage consists of the optical domain (OD)-based RF cancellation, where cancelers are connected with the RF chain pairs. The third stage is comprised of the digital cancellation via successive interference cancellation followed by minimum mean-squared error baseband receiver. Multiuser interference in the access link is canceled by zero-forcing at the IAB-node transmitter. Simulations show that under 400 MHz bandwidth, our proposed OD-based RF cancellation can achieve around 25 dB of cancellation with 100 taps. Moreover, the higher the hardware impairment and channel estimation error, the worse digital cancellation ability we can obtain.
翻译:本文为频率范围2 (FF2) 频范围2 (FF2) 频带中以频谱范围2 (FFF2) 获得的基于3GPP的全频内取消(IBFD) 综合接入和回击(IAB) 网络设计了一个由3GPP(IBFFD) 启发的3GPP(IBPP) 集成设计,可以提高光谱效率(SES)和覆盖面,同时降低延缓度。然而,通常比利益信号高出100 dB的自我干预(SI)通常成为开发这些IMB网络的主要瓶颈。我们设计并分析一个基于400全频带(IBFFD-IAB) 的综合取消系统,通过调频2 频率2 (FFFR) 的更高级代碼簿(IBBB),通过调频域(RF2) RE 的修改的LFB-Buzo- Gray(LG) 算算法(R) 算法(R) 运算法(IFDR) ) ) 能力获得的更深的更深的更深的 RFDFDFDFDFDFD(IFDR) 取消(IDR) 解解解解解码系统能力获得能力获得能力获得的系统。