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Indoor positioning using a high-speed, fish-eye lens-equipped camera in Visible Light Communication

机译:在可见光通信中使用配备了鱼眼镜头的高速摄像头进行室内定位

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We propose a method for determining the indoor position based on a Visible Light Communication (VLC) system that uses a high-speed fish-eye lens-equipped camera. In VLC, lights are used as data transmitters and users can receive location information using a receiving device. Since the lights are configured to meet a pre-determined illumination level, the system requires neither space nor additional power. The lights serve their usual function as sources of illumination, and as a means of transmitting digitized information. Up to now, photo sensors or a normal lens-equipped camera have been used as receiving devices. However, the number of lights that can be received by a photo sensor is limited, and the receiving angle of the image that a normal lens-equipped camera takes is also limited. Since a camera with a fish-eye lens commands a 180-degree view of the ceiling, the number of detectable LED lights increases and positioning accuracy is improved. In terms of data transmission in VLC, the LED lights transmit data at 9.6 kbps. Thus, we use a high-speed complementary metal-oxide-semiconductor image sensor to receive the digitized information. The sampling frequency of the image sensor is up to 48 kHz. The LED lights send ID frames containing a prefix, ID, and Cyclic Redundancy Check (CRC) code. The ID and CRC are modulated with 4 Pulse-Position Modulation. The receiver detects the LED lights from the ceiling image. Then, variations in intensity at the center of the LED lights are stored as light signals. Since received data can be separated into two segments within a small buffer, according to the measurement period, received data are occasionally swapped. The receiver obtains the world coordinates of the LED light from the received ID. Finally, self-location estimation is performed using the relationship between the fish-eye image coordinates and the world coordinates. We conducted an experiment using the VLC platform in Niigata University, with the receiver positi- n fixed at 24 measuring points. The platform area measures 5.4 m by 7.5 m, and the ceiling height is 3 m.The results show that the maximum horizontal error is 10 cm.We conclude that it is possible to determine a horizontal position within merely 10 cm, using the proposed method.
机译:我们提出了一种基于可见光通信(VLC)系统的室内位置确定方法,该系统使用配备了高速鱼眼镜头的相机。在VLC中,灯用作数据发送器,用户可以使用接收设备接收位置信息。由于灯被配置为满足预定的照明水平,因此该系统既不需要空间也不需要额外的功率。照明灯通常用作照明源,并用作传输数字化信息的手段。迄今为止,光传感器或配备有普通镜头的相机已被用作接收设备。但是,光传感器能够接收的光的数量受到限制,并且配备有普通镜头的相机拍摄的图像的接收角度也受到限制。由于带有鱼眼镜头的摄像机可控制天花板的180度视角,因此可检测到的LED灯数量会增加,并且定位精度也会提高。就VLC中的数据传输而言,LED灯以9.6 kbps的速率传输数据。因此,我们使用高速互补金属氧化物半导体图像传感器来接收数字化信息。图像传感器的采样频率高达48 kHz。 LED灯发送包含前缀,ID和循环冗余校验(CRC)代码的ID帧。 ID和CRC通过4脉冲位置调制进行调制。接收器从天花板图像中检测到LED灯。然后,将LED灯的中心处的强度变化存储为光信号。由于接收到的数据可以在一个小缓冲区内分成两部分,因此根据测量周期,有时会交换接收到的数据。接收器从接收到的ID中获取LED灯的世界坐标。最后,利用鱼眼图像坐标和世界坐标之间的关系来执行自定位估计。我们使用了新泻大学的VLC平台进行了一项实验,将接收器位置固定在24个测量点上。平台面积为5.4 m x 7.5 m,天花板高度为3 m。结果表明,最大水平误差为10 cm。我们得出的结论是,使用所提出的方法可以确定仅10 cm内的水平位置。

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