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Interference Rejection Using Filter-Based Sensor Array in VLC Systems

机译:在VLC系统中使用基于滤波器的传感器阵列抑制干扰

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摘要

With the recent development of solid-state lighting (SSL) technologies, visible light communication (VLC) systems using light-emitting diodes (LEDs) has been a promising technology to complement wireless communication. While LEDs offers advantageous properties such as high brightness, lower power consumption, long lifetime, and short transient time for high transmission rates, few researches have been exploited on the receiver side. Conventionally, photoelectric-diodes are implemented to convert optical signals into electronic signals. Since conventional photoelectric-diodes cannot distinguish inputs of different spectra, using conventional photoelectric-diodes have the disadvantage that the system is vulnerable to interference, and that it is hard to achieve wavelength-division-multiplexing (WDM) for light sources of different wavelengths. In this work, a spectrum sensor array is proposed to be implemented on the receiver side to achieve interference rejection. Due to recent advances in semiconductor technologies, spectrum sensors with different spectral transmission properties can be integrated into a chip-scale sensor-array. By proper design of the weightings for individual spectrum sensor, the effective output signal-to-interference ratio (SIR) can be maximized. Following the concept of coherent multi-antenna communication systems, signal fusion algorithms are presented. Our simulation is conducted based on the specification of a prototype filter-array spectrum sensor from nanoLambda. Simulation results demonstrate that robust interference rejection is possible using the low-cost spectrum sensor array.
机译:随着固态照明(SSL)技术的最新发展,使用发光二极管(LED)的可见光通信(VLC)系统已成为一种有前途的技术来补充无线通信。 LED提供了有利的特性,例如高亮度,较低的功耗,较长的使用寿命以及较短的瞬态时间以实现高传输速率,但在接收器端却很少进行研究。常规地,光电二极管被实现为将光信号转换为电子信号。由于常规光电二极管不能区分不同光谱的输入,因此使用常规光电二极管的缺点是系统易受干扰,并且难以为不同波长的光源实现波分复用(WDM)。在这项工作中,建议在接收机侧实现频谱传感器阵列以实现干扰抑制。由于半导体技术的最新进展,具有不同光谱传输特性的光谱传感器可以集成到芯片级传感器阵列中。通过适当设计各个频谱传感器的权重,可以使有效输出信号干扰比(SIR)最大化。遵循相干多天线通信系统的概念,提出了信号融合算法。我们的模拟是基于nanoLambda的原型滤波器阵列频谱传感器的规范进行的。仿真结果表明,使用低成本频谱传感器阵列可以实现强大的干扰抑制能力。

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