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Irregular Repetition Slotted ALOHA with Multiuser Detection

机译:具有多用户检测的不规则重复开槽Aloha

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Irregular repetition slotted ALOHA is a random access scheme where users transmit multiple copies of a packet to the receiver to provide time-domain diversity; then, the receiver attempts to iteratively decode packets and cancel their interference contribution in other time slots, increasing the chance of resolving collisions and decoding more packets. This scheme was shown to support larger system loads compared to conventional slotted ALOHA. In the original scheme, colh'sion resolution between I colliding packets is possible only when I - 1 of those packets are decoded in prior iterations, which is probable because of the other copies of each packet transmitted in other slots. However, although asymptotic analysis promises high efficiency of this scheme, the analysis relies on the large number of slots participating in the iterative collision resolution, which requires large receiver complexity and introduces delay. In this paper, we study this scheme for receivers capable of decoding multiple colliding packets jointly, which increases the chance of decoding more packets under large system loads. Asymptotic analysis for this generalized model is provided and it is shown by simulations that a multiuser detector supports larger loads for low number of slots jointly processed.
机译:不规则重复开槽Aloha是一种随机接入方案,其中用户将分组的多个副本发送到接收器以提供时域分集;然后,接收器试图迭代地解码数据包并取消其在其他时隙中的干扰贡献,从而提高解决冲突和解码更多分组的可能性。与传统的开槽Aloha相比,该方案显示支持较大的系统载荷。在原始方案中,仅当在现有迭代中解码那些分组的I-1时,我碰撞分组之间的COLH'SION分辨率是可能的,这是可能因为在其他时隙中发送的每个分组的其他分组的其他份数而可能。然而,尽管渐近分析承诺了该方案的高效率,但分析依赖于参与迭代碰撞分辨率的大量槽,这需要大的接收器复杂性并引入延迟。在本文中,我们研究了能够联合解码多个碰撞分组的接收器的该方案,这增加了在大系统负载下解码更多分组的机会。提供了该广义模型的渐性分析,并且通过模拟示出了多用户检测器支持较大的负载,用于共同处理的槽数量的槽。

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