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Channel Aware Sparse Transmission for Ultra Low-Latency Communications in TDD Systems

机译:TDD系统中超低延迟通信的通道感知稀疏传输

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摘要

Major goal of ultra reliable and low latency communication (URLLC) is to reduce the latency down to a millisecond (ms) level while ensuring reliability of the transmission. Since the current uplink transmission scheme requires a complicated handshaking procedure to initiate the transmission, to meet this stringent latency requirement is a challenge in wireless system design. In particular, in the time division duplexing (TDD) systems, supporting the URLLC is difficult since the mobile device has to wait until the transmit direction is switched to the uplink. In this paper, we propose a new approach to support a low latency access in TDD systems, called channel aware sparse transmission (CAST). Key idea of the proposed scheme is to encode a grant signal in a form of sparse vector. This together with the fact that the sensing mechanism preserves the energy of the sparse vector allows us to use the compressed sensing (CS) technique in CAST decoding. From the performance analysis and numerical evaluations, we demonstrate that the proposed CAST scheme achieves a significant reduction in access latency over the 4G LTE-TDD and 5G NR-TDD systems.
机译:超可靠和低延迟通信(URLLC)的主要目标是将延迟降低到毫秒(MS)级别,同时确保传输的可靠性。由于当前的上行链路传输方案需要复杂的握手过程来启动传输,以满足这种严格的延迟要求是无线系统设计中的挑战。特别地,在时分双工(TDD)系统中,由于移动设备必须等到发射方向切换到上行链路,因此难以支撑URLLC。在本文中,我们提出了一种支持TDD系统中的低延迟访问的新方法,称为信道感知稀疏传输(CAST)。所提出的方案的关键思想是以稀疏向量的形式编码授权信号。这与传感机制保留稀疏向量的能量的事实允许我们在铸造解码中使用压缩感测(CS)技术。从性能分析和数值评估中,我们证明了所提出的铸件方案在4G LTE-TDD和5G NR-TDD系统上实现了访问延迟的显着降低。

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