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首页> 外文期刊>Communications Letters, IEEE >Link Sense: Beyond Wireless Carrier Sensing
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Link Sense: Beyond Wireless Carrier Sensing

机译:链接感:无线载波侦听之外

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Carrier sensing is the act of listening on a wireless channel before initiating a transmission. It is intrinsic to modern random access protocols to avoid collisions. However, carrier sense is only a binary indicator of whether the channel is idle or busy. Knowing why it is busy (i.e., which sender-receiver pair is currently communicating) would be very useful in scheduling concurrent transmissions. While this information could be decoded from the frame header, it is not always feasible especially when the listener is outside the decoding (but within the sensing) range. Even if the listener is within decoding range, it may not be able to decode the header because of interference, or perhaps because it was sleeping. We propose LinkSense that leverages OFDM subcarriers to embed a per-link signature in each transmission. With LinkSense, a listener can decide to sense the channel at any given time, and identify which links are active in the vicinity. The listener need not be within decoding range of the active links, and can sense the channel only for a few OFDM symbol durations. We explore the feasibility of LinkSense and implement/validate it using USRPs/GNU Radios.
机译:载波侦听是在发起传输之前侦听无线信道的行为。现代随机访问协议必须避免冲突。但是,载波侦听只是信道空闲还是繁忙的二进制指示。知道为什么繁忙(即,哪个发送方-接收方对当前正在通信)在调度并发传输中非常有用。尽管可以从帧头解码此信息,但并非总是可行的,尤其是在侦听器不在解码范围内(但在感测范围之内)的情况下。即使侦听器在解码范围内,它也可能由于干扰或可能正在休眠而无法解码头。我们提出LinkSense,它利用OFDM子载波在每个传输中嵌入每个链路的签名。借助LinkSense,听众可以决定在任何给定时间感知信道,并确定附近有哪些链路处于活动状态。侦听器不必在活动链路的解码范围内,并且只能在几个OFDM符号持续时间内感知信道。我们探索LinkSense的可行性,并使用USRP / GNU无线电实现/验证它。

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