Dual-Functional Radar-Communication systems enhance the benefits of communications and radar sensing by jointly implementing these on the same hardware platform and using the common RF resources. An important and latest concern to be addressed in designing such Dual-Functional Radar-Communication systems is maximizing the energy-efficiency. In this paper, we consider a Dual-Functional Radar-Communication system performing simultaneous multi-user communications and radar sensing, and investigate the energy-efficiency behaviour with respect to active transmission elements. Specifically, we formulate a problem to find the optimal precoders and the number of active RF chains for maximum energy-efficiency by taking into consideration the power consumption of low-resolution Digital-to-Analog Converters on each RF chain under communications and radar performance constraints. We consider Rate-Splitting Multiple Access to perform multi-user communications with perfect and imperfect Channel State Information at Transmitter. The formulated non-convex optimization problem is solved by means of a novel algorithm. We demonstrate by numerical results that Rate Splitting Multiple Access achieves an improved energy-efficiency by employing a smaller number of RF chains compared to Space Division Multiple Access, owing to its generalized structure and improved interference management capabilities.
翻译:双功能雷达通信系统通过在同一硬件平台上共同使用共同RF资源,提高了通信和雷达遥感的效益。设计这种双功能雷达通信系统需要解决的一个重要和最新关切是最大限度地提高能源效率。在本文中,我们考虑采用双功能雷达通信系统,同时进行多用户同时通信和雷达遥感,并调查主动传输要素方面的节能行为。具体地说,我们提出了一个问题,要找到最佳的预译器,并找到活跃的RF链链的数目,以便实现最高能效。我们考虑到在通信和雷达性能限制下,低分辨率数字到Analog转换器在每个RF链上的电力消耗量。我们考虑在通信和雷达性能限制下,采用超速多功能使用多功能进行多用户通信,同时提供完美和不完善的国家频道信息传输器。开发的非电离子系统优化问题通过新算法解决。我们通过数字结果证明,通过使用比空间司多接入系统较少数量的RF链来提高能源效率,因为其普遍和受到干扰的能力得到了提高。