论文标题
有效的基于空间调制的室内VLC系统的方案
An Effective Spatial Modulation Based Scheme for Indoor VLC Systems
论文作者
论文摘要
我们提出了一个增强的空间调制(SM),用于室内可见光通信系统。该方案通过传输高阶复杂调制符号来增强常规SM方案的可实现吞吐量,该符号分解为三个不同的部分。这些部分具有复杂符号的幅度,相和象限成分,然后由单极脉冲振幅调制(PAM)符号表示。叠加编码被利用以分配总功率的一小部分,然后同时多路复用并传输,从而利用整个可用的带宽。在接收器上,提出了一个两步解码过程,以在检索复杂符号之前解码发射二极管索引。结果表明,在较高的频谱效率值下,所提出的调制方案在平均符号错误率(ASER)方面优于使用PAM符号的常规SM方案,因此可以增强系统吞吐量。此外,由于提出的调制方案的性能对功率分配因子敏感,因此我们提出了一个ASER优化问题,并使用连续的凸面编程(SCP)提出了亚最佳解决方案。值得注意的是,所提出的算法仅在几次迭代后收敛,而优化功率分配系数的性能优于随机和固定功率分配。
We propose an enhanced spatial modulation (SM)-based scheme for indoor visible light communication systems. This scheme enhances the achievable throughput of conventional SM schemes by transmitting higher order complex modulation symbol, which is decomposed into three different parts. These parts carry the amplitude, phase, and quadrant components of the complex symbol, which are then represented by unipolar pulse amplitude modulation (PAM) symbols. Superposition coding is exploited to allocate a fraction of the total power to each part before they are all multiplexed and transmitted simultaneously, exploiting the entire available bandwidth. At the receiver, a two-step decoding process is proposed to decode the active light emitting diode index before the complex symbol is retrieved. It is shown that at higher spectral efficiency values, the proposed modulation scheme outperforms conventional SM schemes with PAM symbols in terms of average symbol error rate (ASER), and hence, enhancing the system throughput. Furthermore, since the performance of the proposed modulation scheme is sensitive to the power allocation factors, we formulated an ASER optimization problem and propose a sub-optimal solution using successive convex programming (SCP). Notably, the proposed algorithm converges after only few iterations, whilst the performance with the optimized power allocation coefficients outperforms both random and fixed power allocation.