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MIMO slotted ALOHA systems with collision resolution and truncated HARQ transmission and combining

机译:具有冲突解决方案和缩短的HARQ传输和组合功能的MIMO时隙ALOHA系统

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摘要

In this paper, we investigate throughput and delay enhancement for two multi-user multiple-input multiple-output (MIMO) systems one with space-time block coding (STBC), the other with spatial multiplexing (SM) at the transmitter. Users operate using the slotted ALOHA (SA) protocol to access the wireless channel resulting in a high probability of collision. For both systems, we consider the uplink scenario, and we propose to recover the collided packets with spatial successive interference cancelation (SSIC) and a protocol for retransmission and combining of unsuccessfully received collided packets applying a truncated Hybrid Automatic Repeat reQuest (HARQ) scheme. For the first system, we propose to use channel realizations of collided packets as different signatures to separate them. Moreover, we propose a solution for the problem when the received powers are comparable. For this system, we note that the orthogonality of the STBC matrix allows the use of a simple linear processing step for the initialization of SSIC. For the SM multi-user system, the separation of collided packets is based on V-BLAST processing and SSIC. We also propose how to combine retransmitted packets. For both systems, we evaluate the block error rate, the throughput, and the delay. A comparison is done with the single-user case and with other receivers proposed in the literature.
机译:在本文中,我们研究了两个多用户多输入多输出(MIMO)系统的吞吐量和延迟增强,其中一个系统具有空时块编码(STBC),另一个系统具有发射机处的空间复用(SM)。用户使用带时隙的ALOHA(SA)协议进行操作以访问无线信道,从而导致发生冲突的可能性很高。对于这两个系统,我们考虑了上行链路情况,并建议使用空间连续干扰消除(SSIC)和协议重新传输冲突的数据包,并采用截断的混合自动重发请求(HARQ)方案进行重传和合并未成功接收的冲突数据包。对于第一个系统,我们建议使用冲突数据包的通道实现作为不同的签名来分离它们。此外,当接收功率可比较时,我们提出了该问题的解决方案。对于该系统,我们注意到STBC矩阵的正交性允许使用简单的线性处理步骤来初始化SSIC。对于SM多用户系统,冲突数据包的分离基于V-BLAST处理和SSIC。我们还提出了如何组合重传的数据包。对于这两个系统,我们评估块错误率,吞吐量和延迟。与单用户情况和文献中提出的其他接收器进行了比较。

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