The two-user Gaussian interference channel (G-IC) is revisited, with a particular focus on practically amenable discrete input signalling and treating interference as noise (TIN) receivers. The corresponding deterministic interference channel (D-IC) is first investigated and coding schemes that can achieve the entire capacity region of D-IC under TIN are proposed. These schemes are then systematically translate into multi-layer superposition coding schemes based on purely discrete inputs for the real-valued G-IC. Our analysis shows that the proposed scheme is able to achieve the entire capacity region to within a constant gap for all channel parameters. To the best of our knowledge, this is the first constant-gap result under purely discrete signalling and TIN for the entire capacity region and all the interference regimes. Furthermore, the approach is extended to obtain coding scheme based on discrete inputs for the complex-valued G-IC. For such a scenario, the minimum distance and the achievable rate of the proposed scheme under TIN are analyzed, which takes into account the effects of random phase rotations introduced by the channels. Simulation results show that our scheme is capable of approaching the capacity region of the complex-valued G-IC and significantly outperforms Gaussian signalling with TIN in various interference regimes.
翻译:对两用户高斯干扰信道(G-IC)进行了重新研究,特别侧重于实际可操作的离散输入信号,并将干扰作为噪音接收器处理;对相应的确定性干扰通道(D-IC)首先进行调查,提出能够实现TIN下D-IC整个能力区的编码计划;然后,根据对实际价值G-IC的纯离散投入,将这些计划系统地转化为多层叠加编码计划;我们的分析表明,拟议的计划能够实现整个能力区域,使其在所有频道参数的恒定间间间间间间间间之间达到始终存在的差距;据我们所知,这是在纯离散信号下的第一个恒定式干扰通道(D-IC),这是整个能力区和所有干扰制度下的第一个恒定式干扰通道(D-IC)的结果;此外,还扩展了方法,以获得基于复杂价值G-IC的离散投入的编码计划。关于这种假设,对TIN下拟议计划的最低距离和可实现率进行了分析,其中考虑到频道随机轮换的影响。模拟结果显示,我们的信号计划能够大大接近GIC的复杂能力的高射系统。