论文标题
MIMO光学无线通信的灵活LED指数调制
Flexible LED Index Modulation for MIMO Optical Wireless Communications
论文作者
论文摘要
光学通信(OWC)前端设备的有限带宽促使使用多输入 - 型输出(MIMO)技术来提高数据速率。众所周知,可以通过空间多路复用(SMX)来换取详尽的检测复杂性,可以实现很高的多路复用收益。另外,在空间调制(SM)中,每个时间实例都激活了单个光发射二极管(LED),在该实例中,信号和LED索引都携带信息。由于只有LED是活跃的,因此发射器(TX)和接收器(RX)的复杂性都大大降低,同时保留在空间域中的信息传输。但是,与SMX相比,SM发生了明显的光谱效率损失。在本文中,我们提出了一种采用两种系统优势的技术。因此,提出的柔性LED索引调制(FLIM)技术将LED的不活跃状态作为传输符号。因此,与传统技术不同,主动LED的数量会变化。此外,通过使用线性最小平方误差(MMSE)均衡器和RX处的角度扰动接收器来降低系统的复杂性。数值结果表明,在低和中/高光谱效率区域中,FLIM的表现至少超过6 dB。
The limited bandwidth of optical wireless communication (OWC) front-end devices motivates the use of multiple-input-multiple-output (MIMO) techniques to enhance data rates. It is known that very high multiplexing gains could be achieved by spatial multiplexing (SMX) in exchange for exhaustive detection complexity. Alternatively, in spatial modulation (SM), a single light emitting diode (LED) is activated per time instance where information is carried by both the signal and the LED index. Since only an LED is active, both transmitter (TX) and receiver (RX) complexity reduces significantly while retaining the information transmission in the spatial domain. However, significant spectral efficiency losses occur in SM compared to SMX. In this paper, we propose a technique which adopts the advantages of both systems. Accordingly, the proposed flexible LED index modulation (FLIM) technique harnesses the inactive state of the LEDs as a transmit symbol. Therefore, the number of active LEDs changes in each transmission, unlike conventional techniques. Moreover, the system complexity is reduced by employing a linear minimum mean squared error (MMSE) equalizer and an angle perturbed receiver at the RX. Numerical results show that FLIM outperforms the reference systems by at least 6 dB in the low and medium/high spectral efficiency regions.