Poster: styrofoam: a tightly packed coding scheme for camera-based visible light communication

David Ramírez, R. Likamwa, Jason Holloway
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引用次数: 12

Abstract

Screen-to-camera visible-light communication links are fundamentally limited by inter-symbol interference, in which the camera receives multiple overlapping symbols in a single capture exposure. By determining interference constraints, we are able to decode symbols with multi-bit depth across all three color channels. We present Styrofoam, a coding scheme which optimally satisfies the constraints by inserting blank frames into the transmission pattern. The coding scheme improves upon the state-of-the-art in camera-based visible-light communication by: (1) ensuring a decode with at least half-exposure of colored multi-bit symbols, (2) limiting decode latency to two transmission frames, and (3) transmitting 0.4 bytes per grid block at the slowest camera's frame rate. In doing so, we outperform peer unsynchronized VLC transmission schemes by 2.9x. Our implementation on smartphone displays and cameras achieves 69.1 kbps.
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海报:聚苯乙烯泡沫塑料:一种紧密包装的编码方案,用于基于摄像头的可见光通信
屏幕到相机的可见光通信链路从根本上受到符号间干扰的限制,其中相机在一次捕获曝光中接收多个重叠的符号。通过确定干扰约束,我们能够在所有三个颜色通道上解码具有多位深度的符号。我们提出了一种通过在传输模式中插入空白帧来最优地满足约束的编码方案——聚苯乙烯泡沫。该编码方案通过以下方式改进了基于摄像机的最先进的可见光通信:(1)确保解码至少有一半的彩色多位符号曝光,(2)将解码延迟限制在两个传输帧内,(3)以最慢的摄像机帧速率传输每个网格块0.4字节。通过这样做,我们比对等非同步VLC传输方案性能高2.9倍。我们在智能手机显示器和相机上的实现达到69.1 kbps。
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