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Extended Spatial-Index LED Modulation for Optical MIMO-OFDM Wireless Communication

机译:用于光学MIMO-OFDM无线通信的扩展空间索引LED调制

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摘要

An efficient optical modulation technique for multi-input multi-output (MIMO) orthogonal frequency division multiplexing (OFDM) visible light communication system is proposed in this paper. The proposed modulation technique is termed as extended spatial-index light-emitting diode (LED) modulation. In the proposed technique, the indices (the spatial domain) of the LEDs are exploited in a dynamic style to not only get rid of the optical OFDM time-domain (OFDMtd) shaping problem but also to expand the LED indices spatial modulation domain. The indices of the active LEDs in the proposed technique are changed from the two LEDs active situation to the situation where all or several LEDs are active. Moreover, within the selected active LED indices, the power weight distribution and the positions of the OFDM components are varied to expand the resultant spatial domain. Therefore, the proposed technique offers a considerable spectral efficiency improvement over the up-to-date LED index OFDM modulation schemes even with a lower number of LEDs. The key idea of the proposed technique is to maximize the LEDs' indices spatial position (spatial domain) utilization, where both the power weight allocation and the positions of the complex OFDM time domain components are varying several times over the same active LED indices combination, which improve the optical system spectral efficiency. The simulation results asserted the superiority of the proposed technique, as it improves both the average bit error rate (ABER) and the achievable data rate (R) compared with existing up-to-date OFDM-LED index modulations with even lower computational complexity.
机译:本文提出了一种用于多输入多输出(MIMO)正交频分复用(OFDM)可见光通信系统的有效光学调制技术。所提出的调制技术称为扩展空间折射率发光二极管(LED)调制。在所提出的技术中,LED的指数(空间域)在动态风格中被利用,不仅可以摆脱光学OFDM时间域(OFDMTD)整形问题,而且还可以扩展LED指数空间调制域。所提出的技术中的有源LED的指标从两个LED活动情况发生变为全部或几个LED处于活动状态的情况。此外,在所选择的主动LED指标内,可以改变功率重量分布和OFDM组件的位置以展开所得到的空间域。因此,即使具有较低数量的LED,所提出的技术也提供了对最新的LED索引OFDM调制方案的相当大的光谱效率改进。所提出的技术的关键思想是最大化LED的指数空间位置(空间域)利用率,其中复合OFDM时域分量的功率重量分配和位置在相同的有源LED指标组合上变化多次,这提高了光学系统光谱效率。仿真结果断言所提出的技术的优越性,因为它可以改善平均误码率(aber)和可实现的数据速率(R),与甚至更低的计算复杂度的现有最新的OFDM-LED索引调制相比。

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