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首页> 外文期刊>IEEE transactions on wireless communications >Random Access Scheme for Sporadic Users in 5G
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Random Access Scheme for Sporadic Users in 5G

机译:5G中零星用户的随机接入方案

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摘要

Machine-type communication (MTC) devices usually have low-data rate, and in some applications, latency is critical. In long-term evolution, 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 cumbersome for MTC traffic, where large amounts of low-activity users intermittently transmit a small number of packets. We propose a random access channel (RACH)-based scheme for the future 5G system that allows MTC users to send small packets within the random access burst. Device activity detection, channel estimation, authentication, and data decoding are performed simultaneously from the same access burst. In addition to the inherent reduction in energy consumption, the scheme eliminates the signaling overhead and creates more resources for data transmission. We have constructed an analytical framework for the detection performance of a multiple-input–multiple-output receiver in a frequency-selective channel. This has been validated with simulations, and results show that a one-shot correlate-and-cancel algorithm is sufficient for activity detection and channel estimation when the base station either employs multiple receive antennas or schedules multiple resource blocks for MTC RACH.
机译:机器类型通信(MTC)设备通常具有低数据速率,在某些应用中,延迟至关重要。在长期演进中,建立连接需要相对复杂的握手过程。这种方法适用于仅服务于少数几个高活动性用户的系统,但是对于MTC流量而言却变得繁琐,因为在该系统中,大量的低活动性用户间歇地传输少量数据包。我们为未来的5G系统提出了一种基于随机访问信道(RACH)的方案,该方案允许MTC用户在随机访问突发中发送小数据包。从同一访问突发同时执行设备活动检测,信道估计,身份验证和数据解码。除了固有地减少能耗之外,该方案还消除了信令开销,并为数据传输创建了更多资源。我们为频率选择信道中的多输入多输出接收机的检测性能构建了一个分析框架。这已通过仿真验证,结果表明,当基站采用多个接收天线或为MTC RACH调度多个资源块时,单次关联取消算法就足以进行活动检测和信道估计。

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