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Compressive sensing for MTC in new LTE uplink multi-user random access channel

机译:新型LTE上行多用户随机接入信道中MTC的压缩感知

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摘要

In LTE, establishing a connection requires a relatively complex handshaking procedure. Such an approach is suitable for a system serving only a few high activity users, but it becomes very cumbersome for machine to machine (M2M) traffic, where large amounts of low activity users intermittently transmit a small number of packets. To avoiding excessive signaling overhead, each packet has to facilitate user detection, channel estimation, and data decoding. Even in the case of limited network activity, users may transmit simultaneously, resulting in packet collisions. It has been shown that such traffic can be best served by a Compressive Sensing (CS) detector. However, most of the CS-based multi-user detection (CS-MUD) research deals with Code Division Multiple Access (CDMA) type systems. In this work we propose a CS-MUD algorithm that is designed for single carrier OFDM (SC-OFDM) systems and, as such, can be integrated into LTE uplink subframes. Each packet contains both a user identification code (ID) and data. The CS algorithm uses the ID not only for user detection, but also for channel estimation. We investigate random and structured ID code generation and report system performance in both cases.
机译:在LTE中,建立连接需要相对复杂的握手过程。这样的方法适用于仅服务于几个高活动用户的系统,但是对于机器对机器(M2M)流量非常麻烦,在该机器对机器中,大量的低活动用户间歇地传输少量数据包。为了避免过多的信令开销,每个数据包必须方便用户检测,信道估计和数据解码。即使在网络活动受限的情况下,用户也可能同时进行传输,从而导致数据包冲突。已经表明,这种流量可以通过压缩感知(CS)检测器得到最好的服务。但是,大多数基于CS的多用户检测(CS-MUD)研究涉及码分多址(CDMA)类型的系统。在这项工作中,我们提出了一种CS-MUD算法,该算法设计用于单载波OFDM(SC-OFDM)系统,因此可以集成到LTE上行链路子帧中。每个数据包都包含用户标识码(ID)和数据。 CS算法不仅将ID用于用户检测,而且还将其用于信道估计。我们调查两种情况下随机和结构化ID代码的生成并报告系统性能。

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