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On the performance of slotted ALOHA in a spread spectrum environment

机译:关于时隙ALOHA在扩频环境中的性能

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摘要

We present an extension of the slotted ALOHA protocol for use in a spread spectrum packet radio environment. With spread spectrum, we assume that N distinct codes are available, and that each code can be treated as a separate channel. Running an independent copy of the protocol on each of these channels would be undesirable, since each user would have to select one channel to monitor for packets addressed to it, inducing a logical partitioning of the user population into N groups. To preserve the logical connectivity of the network, we examine the effect of separating packet transmissions into two parts, a short preamble, which is sent over a public channel, and followed by the body, which is sent over a private channel. We assume that m of the available codes are used as preamble channels, and the remaining N - m codes are used for actual packet transmissions. If m (@@@@) N,then the network can support broadcast and multicast packets, and still make use of all of the available channels.

机译:

我们提出了时隙ALOHA协议的扩展,用于扩展频谱分组无线环境。对于扩频,我们假设可用 N 个不同的代码,并且每个代码都可以视为一个单独的信道。在这些通道中的每个通道上运行协议的独立副本都是不希望的,因为每个用户将不得不选择一个通道来监视寻址到该通道的数据包,从而导致用户群在逻辑上划分为 N 组。为了保持网络的逻辑连通性,我们研究了将数据包传输分为两个部分的效果,即短的前导,它通过公共信道发送,然后是正文,< / ITALIC >>,通过私人渠道发送。我们假定可用代码中的 m 用作前导信道,而其余的 N-m 码则用于实际的分组传输。如果 m(@@@@)N ,则网络可以支持广播和多播数据包,并且仍可以使用所有可用通道。

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