Media-based modulation (MBM) is a novel modulation technique that can improve the spectral efficiency of the existing wireless systems. In MBM, multiple radio frequency (RF) mirrors are placed near the transmit antenna(s) and are switched ON/OFF to create different channel fade realizations. In such systems, additional information is conveyed through the ON/OFF status of RF mirrors along with conventional modulation symbols. A challenging task at the receiver is to detect the transmitted information symbols and extract the additional information from the channel fade realization used for transmission. In this paper, we consider a massive MIMO (mMIMO) system where each user relies on MBM for transmitting information to the base station, and investigate the problem of symbol detection at the base station. First, we propose a mirror activation pattern (MAP) selection based modified iterative sequential detection algorithm. With the proposed algorithm, the most favorable MAP is selected, followed by the detection of symbol corresponding to the selected MAP. Each solution is subjected to the reliability check before getting the update. Next, we introduce a $K$ favorable MAP search based iterative interference cancellation (KMAP-IIC) algorithm. In particular, a selection rule is introduced in KMAP-IIC for deciding the set of favorable MAPs over which iterative interference cancellation is performed, followed by a greedy update scheme for detecting the MBM symbols corresponding to each user. Simulation results show that the proposed detection algorithms exhibit superior performance-complexity trade-off over the existing detection techniques in MBM-mMIMO systems.
翻译:基于媒体的调制(MMMM)是一种新颖的调制技术,可以提高现有无线系统的光谱效率。在MBM中,多无线电频率(RF)镜片被放置在传输天线附近,并在O/OFF中交换,以创造不同的频道淡化认识。在这种系统中,额外的信息通过RF镜O/OFF状态和常规调制符号传递。接收者的一项艰巨任务是检测传送的信息符号,并从用于传输的频道中提取更多的信息。在本文中,我们考虑一个大型MIM(MIMO)系统,每个用户都依靠MBM(RF)向基地站传递信息,并调查基站的符号检测问题。首先,我们建议根据对RF镜镜镜镜的调试样(MAP)选择一个基于修改的迭代测算法,然后对选定 MMAPM(M) 的符号进行检测。在获取更新之前,每个解决方案都要接受可靠性检查。接下来,我们引入一个基于$$MMIMO(MIM)的基于搜索的高级访问访问访问,在S-LAM(MMAP-II)升级的每次测试后将显示S-MLA-S-S-C)升级的升级系统进行。