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Fiber Aided Wireless Network Architecture: A SISO wireless-optical channel

机译:光纤辅助无线网络体系结构:SISO无线通道

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We introduce the concept of a fiber aided wireless network architecture (FAWNA), which allows high-speed mobile connectivity by leveraging the speed of optical networks. As a first step towards designing such network architectures, we consider a single-input, single-output (SISO) wireless-optical communication link. This link consists of a wireless channel and a fiber optic channel, connected to each other by a wireless-optical interface. We propose a scheme where the received signal at the wireless-optical interface is quantized before being sent over the fiber. The achievable rate for this scheme approaches the SISO capacity exponentially with fiber capacity. We show that for fixed fiber capacity, there is an optimal wireless bandwidth of operation when our scheme is used. The wireless-optical interface has low complexity and does not require knowledge of the transmitter code book. Moreover, the loss in "soft" information, due to quantization, goes to 0 asymptotically with increase in fiber capacity. These properties make our scheme extendable to FAWNAs with large number of transmitters, radio-optic converters, variable rates, changing channel conditions and node positions.
机译:我们介绍了光纤辅助无线网络架构(FAWNA)的概念,该架构可通过利用光网络的速度实现高速移动连接。作为设计此类网络体系结构的第一步,我们考虑了单输入单输出(SISO)无线通信链路。该链接包含一个无线通道和一个光纤通道,它们通过无线接口相互连接。我们提出一种方案,在该方案中,在通过光纤发送无线接口之前,对接收到的信号进行量化。该方案可达到的速率与光纤容量成指数关系,接近SISO容量。我们表明,对于固定的光纤容量,当使用我们的方案时,存在最佳的操作无线带宽。无线光学接口的复杂度较低,不需要了解发送器密码本。而且,由于光纤的增加,随着纤维容量的增加,“软”信息的损失渐近地变为0。这些特性使我们的方案可以扩展到具有大量发射机,无线电转换器,可变速率,不断变化的信道条件和节点位置的FAWNA。

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