Mohammad Soleymani, Ignacio Santamaria, Aydin Sezgin, Eduard Jorswieck
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引用次数: 0
摘要
可重构智能表面(RIS)是提高无线通信系统频谱效率(SE)和能效(EE)的一项新兴技术,在单载波系统中显示出强大的功能。然而,在多用户正交频分复用(OFDM)系统中,RIS的前景可能不如单载波系统,因为在多载波系统中不可能对每个子载波的RIS元素进行独立优化。因此,本文研究了各种 RIS 技术在多用户多输入多输出(MIMO)OFDM 广播信道(BC)中的性能,如常规(反射和被动)、同时发射和反射(STAR)以及多扇区超越对角线(BD)RIS。这就需要提出并解决一个联合 MIMO 预编码和 RIS 优化问题。此外,我们还为 MIMO OFDM 广播信道中的 STAR-RIS 和 multi-sectorBD-RIS 开发了资源分配方案,并表明这些 RIS 技术的性能优于普通 RIS,尤其是当普通 RIS 无法帮助所有用户进行通信时。
Maximizing Spectral and Energy Efficiency in Multi-user MIMO OFDM Systems with RIS and Hardware Impairment
An emerging technology to enhance the spectral efficiency (SE) and energy
efficiency (EE) of wireless communication systems is reconfigurable intelligent
surface (RIS), which is shown to be very powerful in single-carrier systems.
However, in multi-user orthogonal frequency division multiplexing (OFDM)
systems, RIS may not be as promising as in single-carrier systems since an
independent optimization of RIS elements at each sub-carrier is impossible in
multi-carrier systems. Thus, this paper investigates the performance of various
RIS technologies like regular (reflective and passive), simultaneously transmit
and reflect (STAR), and multi-sector beyond diagonal (BD) RIS in multi-user
multiple-input multiple-output (MIMO) OFDM broadcast channels (BC). This
requires to formulate and solve a joint MIMO precoding and RIS optimization
problem. The obtained solution reveals that RIS can significantly improve the
system performance even when the number of RIS elements is relatively low.
Moreover, we develop resource allocation schemes for STAR-RIS and multi-sector
BD-RIS in MIMO OFDM BCs, and show that these RIS technologies can outperform a
regular RIS, especially when the regular RIS cannot assist the communications
for all the users.