首页> 外文会议>The 14th IEEE 2003 International Symposium on Personal, Indoor and Mobile Radio Communications Proceedings v.1 >Experimental Evaluation on Effect of Hybrid ARQ with Packet Combining in Forward Link for VSF-OFCDM Broadband Wireless Access
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Experimental Evaluation on Effect of Hybrid ARQ with Packet Combining in Forward Link for VSF-OFCDM Broadband Wireless Access

机译:VFS-OFC​​OM宽带无线接入前向链路中混合ARQ分组组合效果的实验评估

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This paper experimentally investigates the throughput performance employing hybrid automatic repeat request (ARQ) with a packet combining algorithm, i.e., Incremental redundancy and Chase combining, from the viewpoints of the achievable throughput satisfying the required residual packet error rate (PER), coupled with real-time adaptive modulation and channel coding (AMC) operation, for Variable Spreading Factor-Orthogonal Frequency and Code Division Multiplexing (VSF-OFCDM) broadband wireless access in a forward-link multipath fading channel. Since the implemented base station (BS) and mobile station (MS) transceivers can achieve a high peak throughput of greater than 100 Mbps, the time diversity effect by packet combining or code combining in hybrid ARQ is thoroughly examined associated with the frequency diversity effect over a broadband channel and antenna diversity reception. The experimental results demonstrate that even in a six-path Rayleigh fading channel, Incremental redundancy is superior to Chase combining under high Doppler frequency conditions such as f_D = 140 Hz, especially when the number of maximum retransmissions is small, because the larger coding gain after code combining is effective in compensating for packet errors due to inappropriate modulation and coding scheme (MCS) selection caused by the tracking error of the AMC loop for the fast fading variations. Furthermore, it is elucidated that the throughput values of 7 Mbps and 10 Mbps (achieved at the average received signal energy per symbol-to-background noise power spectrum density ratio (E_s/N_o) of approximately -S dB) satisfying the required PER of below 10~(-4) are achieved when the maximum number of retransmissions is approximately 3 and 7, respectively, in the six-path fading channel with f_D = 20 Hz.
机译:本文从可实现的吞吐量满足所需的残余分组误码率(PER)的角度,结合可实现的吞吐量的角度,对混合自动重发请求(ARQ)与数据包组合算法(即增量冗余和Chase组合)的吞吐量性能进行了实验研究。时间自适应调制和信道编码(AMC)操作,用于前向链路多径衰落信道中的可变扩频因子-正交频分复用(VSF-OFCDM)宽带无线访问。由于已实现的基站(BS)和移动台(MS)收发器可以实现大于100 Mbps的高峰值吞吐量,因此,将彻底检查混合ARQ中通过数据包组合或代码组合产生的时间分集效应,以及与之相关的频率分集效应。宽带信道和天线分集接收。实验结果表明,即使在六径瑞利衰落信道中,在高多普勒频率条件下(例如f_D = 140 Hz),增量冗余也要优于追逐组合,尤其是在最大重传次数较小时,因为码合并可有效补偿由于快速衰落变化的AMC环路跟踪误差而导致的不适当的调制和编码方案(MCS)选择导致的数据包错误。此外,阐明了满足要求的PER为7 Mbps和10 Mbps的吞吐量值(在每个符号与背景噪声功率谱密度比(E_s / N_o)约为-S dB时获得的平均接收信号能量)。在f_D = 20 Hz的六路径衰落信道中,当最大重传次数分别约为3和7时,可达到低于10〜(-4)的水平。

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