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Constant Envelope Precoding for Power-Efficient Downlink Wireless Communicationin Multi-User MIMO Systems Using Large Antenna Arrays

机译:使用大型天线阵列的多用户MIMO系统中的高效节能下行链路无线通信的恒定包络预编码

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摘要

We consider downlink cellular multi-user communication betweena base station (BS) having $N$ antennas and $M$ single-antenna users, i.e.,an $N \times M$ Gaussian Broadcast Channel (GBC).Under an average only total transmit power constraint (APC), large antenna arrays at the BS (having tens to a few hundred antennas) have been recently shown to achieve remarkablemulti-user interference (MUI) suppression with simple precoding techniques.However, building large arrays in practice, would require cheap/power-efficient Radio-Frequency(RF) electronic components. The type of transmitted signal that facilitates the use ofmost power-efficient RF components is a constant envelope (CE) signal (i.e.,the amplitude of the signal transmitted from each antenna is constant for every channel useand every channel realization).Under certain mild channel conditions (including i.i.d. fading), we analytically show that,even under the stringent per-antenna CE transmission constraint (compared to APC),MUI suppression can still be achieved with large antenna arrays. Our analysis also reveals that,with a fixed $M$ and increasing $N$, the total transmitted power can be reduced while maintaining a constant signal-to-interference-noise-ratio (SINR) level at each user.We also propose a novel low-complexity CE precoding scheme, using which,we confirm our analytical observations for the i.i.d. Rayleigh fading channel, through Monte-Carlo simulations.Simulation of the information sum-rate under the per-antenna CE constraint, shows that, for a fixed $M$ and a fixed desired sum-rate, the required total transmit powerdecreases linearly with increasing $N$, i.e.,an $O(N)$ array power gain.Also, in terms of the total transmit power required to achieve a fixed desired information sum-rate,despite the stringent per-antenna CE constraint, the proposed CE precoding scheme performs close to the GBC sum-capacity (under APC) achieving scheme.
机译:我们考虑具有$ N $个天线的基站(BS)与$ M $个单天线用户之间的下行链路蜂窝多用户通信,即$ N×M $高斯广播信道(GBC)。功率限制(APC),最近在BS上使用大型天线阵列(具有数十到几百个天线)已显示出可通过简单的预编码技术实现显着的多用户干扰(MUI)抑制。然而,在实践中构建大型阵列将需要便宜/省电的射频(RF)电子组件。有助于使用最省电的射频组件的发射信号类型是恒定包络(CE)信号(即,从每个天线发射的信号幅度对于每个信道使用和每个信道实现都是恒定的)。分析(包括iid衰落)条件下,我们分析表明,即使在严格的每天线CE传输约束(与APC相比)下,使用大型天线阵列仍然可以实现MUI抑制。我们的分析还显示,通过固定$ M $和增加$ N $,可以降低总发射功率,同时保持每个用户的信号干扰噪声比(SINR)恒定。一种新颖的低复杂度CE预编码方案,使用该方案,我们可以确认对iid的分析观察瑞利衰落信道,通过蒙特卡洛模拟。在每个天线CE约束下的信息求和速率的仿真表明,对于固定的$ M $和固定的期望求和速率,所需的总发射功率随增加而线性减小$ N $,即$ O(N)$阵列功率增益。此外,尽管要达到严格的每天线CE约束,但要达到固定的所需信息总和所需的总发射功率,建议的CE预编码该方案执行接近GBC总容量(在APC下)的实现方案。

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