Visible light communication (VLC) has been recognized as a promising technology for handling the continuously increasing quality of service and connectivity requirements in modern wireless communications, particularly in indoor scenarios. In this context, the present work considers the integration of two distinct modulation schemes, namely spatial modulation (SM) with space time block codes (STBCs), aiming at improving the overall VLC system reliability. Based on this and in order to further enhance the achievable transmission data rate, we integrate quasi-orthogonal STBC (QOSTBC) with SM, since relaxing the orthogonality condition of OSTBC ultimately provides a higher coding rate. Then, we generalize the developed results to any number of active light-emitting diodes (LEDs) and any M-ary pulse amplitude modulation size. Furthermore, we derive a tight and tractable upper bound for the corresponding bit error rate (BER) by considering a simple two-step decoding procedure to detect the indices of the transmitting LEDs and then decode the signal domain symbols. Notably, the obtained results demonstrate that QOSTBC with SM enhances the achievable BER compared to SM with repetition coding (RC-SM). Finally, we compare STBC-SM with both multiple active SM (MASM) and RC-SM in terms of the achievable BER and overall data rate, which further justifies the usefulness of the proposed scheme.
翻译:可见光通信(VLC)被公认为是处理现代无线通信,特别是室内情景中不断提高的服务质量和连通性要求的一个大有希望的技术,在这一背景下,目前的工作考虑将两种不同的调制方案,即空间调制(SM)与空间时区代码(STBC)相结合,目的是提高VLC系统的整体可靠性;在此基础上,为了进一步提高可实现的传输数据率,我们将准正向式STBC(QOSTBC)与SM(QOSTBC)与SM(QSTBBC)的分解程序简单分为两步,以检测传输LEBs(QSTBC)的指数,然后解译信号域号,最终提供了更高的编码率。 然后,我们把开发的结果推广到任何数量的主动光源二极管(LED)和任何M-M-脉冲振动调制调制(STBSM)的大小。此外,我们通过考虑一个简单的分步解解程序,以检测传输LEBCs的指数,然后解解信号域符号符号符号符号符号标志最终提供更高编码。