论文标题
在下行链路非正交多访问系统中启用IRS的反向散射
IRS-Enabled Backscattering in a Downlink Non-Orthogonal Multiple Access System
论文作者
论文摘要
智能反射表面(IRS)启用的反向散射通信可以通过将其传输信号拆分为调制和未调制零件的接入点(AP)启用。该字母将非正交多访问(NOMA)与此方法集成在一起,以创建两个用户主系统和IRS数据的二级系统。考虑到解码顺序,我们通过共同优化IRS相移,AP处的功率分配(PS)因子以及NOMA功率系数,同时分别为弱用户和IRS数据的主要系统中的弱用户和IRS数据保证,我们可以最大程度地提高最强大的主要用户的速率。由此产生的优化问题是非凸面。因此,我们将其分为三个部分,并开发出一种交替优化(AO)算法。优势在于,我们在前两个部分中得出了PS因子和NOMA功率系数的封闭式溶液。在第三部分中,我们通过利用半定义松弛(SDR)和惩罚技术来处理单位模块约束来优化相移。与相关的基线方案相比,该算法实现了可观的增长(例如40--68%)。
Intelligent reflecting surface (IRS)-enabled backscatter communications can be enabled by an access point (AP) that splits its transmit signal into modulated and unmodulated parts. This letter integrates non-orthogonal multiple access (NOMA) with this method to create a two-user primary system and a secondary system of IRS data. Considering the decoding order, we maximize the rate of the strongest primary user by jointly optimizing the IRS phase shifts, power splitting (PS) factor at the AP, and NOMA power coefficients while guaranteeing the quality of service (QoS) for both weak user and IRS data in the primary and secondary systems, respectively. The resulting optimization problem is non-convex. Thus, we split it into three parts and develop an alternating optimization (AO) algorithm. The advantage is that we derive closed-form solutions for the PS factor and NOMA power coefficients in the first two parts. In the third part, we optimize the phase shifts by exploiting semi-definite relaxation (SDR) and penalty techniques to handle the unit-modulus constraints. This algorithm achieves substantial gains (e.g., 40--68%) compared to relevant baseline schemes.