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Design and demonstration of an indoor visible light communication network with dynamic user access and resource allocation

机译:具有动态用户访问和资源分配的室内可见光通信网络的设计和演示

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We design and realize an indoor visible light communication (VLC) network based on the time division mechanism to mitigate inter-cell interference, which can support flexible access and resource allocation of multiple mobile users in the ultra-dense attocell layout. WiFi is adopted for the uplink feedback, including the user ID and channel state information. After receiving feedback, the central coordinator is capable of performing mobile user access, localization, handoff control and resource allocation. The data sent from the central coordinator is buffered at the distributed base stations within the attocells, and then transmitted to the scheduled user by downlink VLC. A real-time experimental platform including three attocells and two users is built up to evaluate the performance of the proposed VLC network. Furthermore, off-line measurements are conducted to find the optimal operating point of the system. Experimental results show that the bit error rate (BER) of the real-time transmission is below 6.3091 × 10-5, and the frame loss rates (FLRs) of static user and mobile user are about 0.1% and 8.2%, respectively.
机译:我们设计并实现了基于时分机制的室内可见光通信(VLC)网络,以减轻小区间干扰,在超密集attocell布局中可以支持多个移动用户的灵活接入和资源分配。上行反馈采用WiFi,包括用户ID和信道状态信息。在收到反馈后,中央协调器能够执行移动用户访问,本地化,切换控制和资源分配。从中央协调器发送的数据在attocell内的分布式基站处进行缓冲,然后通过下行链路VLC发送给调度的用户。建立了一个包括三个attocell和两个用户的实时实验平台,以评估所提出的VLC网络的性能。此外,进行离线测量以找到系统的最佳工作点。实验结果表明,实时传输的误码率(BER)低于6.3091×10 -5 ,静态用户和移动用户的丢帧率(FLR)约为0.1 \ %和8.2 \%。

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