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Analysis of random access channel in UTRA-TDD on AWGN channel

机译:AWGN信道上UTRA-TDD中的随机接入信道分析

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The random access channel (RACH) in UTRA-TDD systems is an uplink contention-based transport channel that is mainly used to carry control information from mobile stations to base stations. In this paper, we study the performance of RACH on an additive white Gaussian noise (AWGN) channel whereby successful transmission of a burst requires the spreading code chosen to be collision-free and the burst is error-free after convolutional decoding. Based on this model, the code-collision probability, the data bit error probability and the RACH channel capacity are derived. The random retransmission delay mechanism is not specified in UTRA-TDD. We therefore choose an access mechanism with binary exponential backoff delay procedure similar to that in IEEE 802.11. Based on that mechanism, the blocking probability and the first two moments of the delay are also derived. Compared with the mean, the standard deviation is found to be very high.
机译:UTRA-TDD系统中的随机接入信道(RACH)是基于上行链路竞争的传输信道,主要用于将控制信息从移动站传输到基站。在本文中,我们研究了RACH在加性高斯白噪声(AWGN)信道上的性能,其中,突发的成功传输需要选择被选择为无冲突且扩频码在卷积解码后没有错误的扩展码。基于该模型,推导了码冲突概率,数据误码率和RACH信道容量。 UTRA-TDD中未指定随机重传延迟机制。因此,我们选择一种具有类似于IEEE 802.11中的二进制指数退避延迟过程的访问机制。基于该机制,还可以得出阻塞概率和延迟的前两个时刻。与平均值相比,发现标准偏差非常高。

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