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Packet error probabilities in frequency-hopped spread-spectrum packet radio networks-memoryless frequency-hopping patterns considered

机译:跳频扩频分组无线电网络中的分组错误概率-考虑了无存储器跳频模式

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摘要

The packet error probability induced in a frequency-hopped spread-spectrum packet radio network is computed. The frequency spectrum is divided into q frequency bins. Each packet is exactly one codeword from an (M, L) Reed-Solomon code (M=number of codeword symbols (bytes); L=number of information symbols (bytes)). Every user in the network sends each of the M bytes of his packet at a frequency chosen among the q frequencies with equal probability and independently of the frequencies chosen for other bytes (i.e., memoryless frequency-hopping patterns). Statistically independent frequency-hopping patterns correspond to different users in the network. Provided that K users have simultaneously transmitted their packets on the channel and a receiver has locked on to one of these K packets, the probability that this packet is not decoded correctly is evaluated. It is also shown that although memoryless frequency-hopping patterns are utilized, the byte errors at the receiver are not statistically independent; instead they exhibit a Markovian structure.
机译:计算在跳频扩频分组无线网络中引起的分组错误概率。频谱被分为q个频率段。每个数据包正好是(M,L)Reed-Solomon码中的一个码字(M =码字符号(字节)数; L =信息符号数(字节))。网络中的每个用户都以相等的概率从q个频率中选择的频率发送其数据包的M个字节中的每个字节,并且独立于为其他字节选择的频率(即无记忆跳频模式)。统计上独立的跳频模式对应于网络中的不同用户。假设有K个用户同时在信道上发送了他们的数据包,并且接收者已锁定到这K个数据包之一,则可以评估该数据包未正确解码的可能性。还表明,尽管利用了无记忆的跳频模式,但接收机处的字节错误在统计上并不是独立的;它是无用的。相反,它们表现出马氏结构。

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