A new interference management scheme based on integer forcing (IF) receivers is studied for the two-user multiple-input and multiple-output (MIMO) interference channel. The proposed scheme employs a message splitting method that divides each data stream into common and private sub-streams, in which the private stream is recovered by the dedicated receiver only while the common stream is required to be recovered by both receivers. Specifically, to enable IF sum decoding at the receiver side, all streams are encoded using the same lattice code. Additionally, the number of common and private streams of each user is carefully determined by considering the number of antennas at transmitters and receivers, the channel matrices, and the effective signal-to-noise ratio (SNR) at each receiver to maximize the achievable rate. Furthermore, we consider various assumptions of channel state information at the transmitter side (CSIT) and propose low-complexity linear transmit beamforming suitable for each CSIT assumption. The achievable sum rate and rate region are analytically derived and extensively evaluated by simulation for various environments, demonstrating that the proposed interference management scheme strictly outperforms the previous benchmark schemes in a wide range of channel parameters due to the gain from IF sum decoding.
翻译:研究基于整数强制(IF)接收器的新干扰管理办法,为两个用户的多输入和多输出(MIMO)干扰渠道研究基于整数强制(IF)接收器的新干扰管理办法;拟议办法采用信息分解方法,将每个数据流分为共同和私有的分流,专用接收器只回收私人流,而共同流则需要由两个接收器回收。具体地说,为使IF在接收器一侧解码,所有流都使用相同的拉链码编码编码;此外,每个用户的共同和私人流的数目通过考虑发射机和接收机的天线数目、频道矩阵以及每个接收器的有效信号对噪音比率(SNR)来仔细确定,以便最大限度地提高可实现的速率;此外,我们考虑在发射机一侧对频道状态信息的各种假设,提出适合CSIT假设的低兼容度线性传输系统。可实现的总和率区域通过对各种环境进行模拟进行分析和广泛评价,表明拟议的干扰管理办法严格地超越了IFF系统以前的基准范围。