School of Electronic Engineering, Soongsil University, Seoul 06978, Korea.
Sensors (Basel). 2020 Jan 4;20(1):292. doi: 10.3390/s20010292.
In vehicular optical camera communication (VOCC) systems, LED panels are used to transmit visible light signals which are captured by cameras. The logic bits 1 and 0 are represented by the On and Off status of the LEDs in the panel. The bit error rate (BER) of the system is directly proportional to the distinguishability of the On and Off LEDs in the received LED panel images. The signal quality is commonly believed in telecommunications to improve with a higher transmitted power. Therefore, one might expect to get a lower BER in VOCC systems by simply using more powerful LED lights. However, this is not the case with VOCC systems. This paper shows that the LED distinguishability is simultaneously determined by two factors: The LED extinction ratio and LED interference. The former needs to be kept high and the latter kept low for better LED distinguishability. The problem is that both the extinction ratio and interference increase with the ratio of LED light to ambient light (L2A). Consequently, an optimal L2A ratio exists to achieve the optimal balance between the positive impact of the extinction ratio and the negative impact of the interference. This can bring about the lowest BER without changing the system's data rate. In addition, this paper shows that the optimal L2A ratio varies according to the interval between the LEDs in a panel. We analyze the effect of the L2A ratio and LED interval on LED distinguishability. We then formulate a constrained optimization problem to find the optimal L2A ratios corresponding to different LED intervals. The simulation results verify the necessity of LED to ambient light ratio optimization as it can bring about the lowest BER without scarifying other aspects of the VOCC system.
在车载光学相机通信(VOCC)系统中,LED 面板用于传输可见光信号,这些信号被相机捕获。逻辑位 1 和 0 由面板中 LED 的 ON 和 OFF 状态表示。系统的误码率(BER)与接收 LED 面板图像中 ON 和 OFF LED 的可区分性直接成正比。在电信中,人们普遍认为信号质量随着传输功率的提高而提高。因此,人们可能期望通过简单地使用更强大的 LED 灯来降低 VOCC 系统中的 BER。然而,VOCC 系统并非如此。本文表明,LED 的可区分性同时由两个因素决定:LED 消光比和 LED 干扰。前者需要保持较高,后者需要保持较低,以实现更好的 LED 可区分性。问题是,消光比和干扰都随着 LED 光与环境光(L2A)的比例而增加。因此,存在一个最佳的 L2A 比,可以在消光比的积极影响和干扰的消极影响之间达到最佳平衡。这可以在不改变系统数据速率的情况下实现最低的 BER。此外,本文还表明,最佳 L2A 比取决于面板中 LED 之间的间隔。我们分析了 L2A 比和 LED 间隔对 LED 可区分性的影响。然后,我们制定了一个约束优化问题,以找到对应于不同 LED 间隔的最佳 L2A 比。仿真结果验证了优化 LED 与环境光比的必要性,因为它可以在不牺牲 VOCC 系统其他方面的情况下实现最低的 BER。