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NOMA With Index Modulation for Uplink URLLC Through Grant-Free Access

机译:通过无授权访问的带有上行链路URLLC索引调制的NOMA

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This paper proposes nonorthogonal sharing of available resources between latency-critical and latency-tolerant communication for fulfilling tight requirements of ultrareliable low-latency communication (URLLC) as well as avoiding inefficient spectrum utilization of grant-based (GB) access for sporadic URLLC traffic. In the proposed system, grant-free (GF) access is adopted for URLLC to reduce transmission latency, whereas GB access is used for latency-tolerant communication. Due to GF access, collision emerges between the communications, and use of OFDM technology for both communications leads to wideband interference (WB-I) on URLLC. Therefore, a novel nonorthogonal multiple accessing (NOMA) scheme based on orthogonal frequency division multiplexing (OFDM) and OFDM with index modulation (OFDM-IM) is proposed in order to reduce the impact of the collision on URLLC, that requires 99.999% success probability within 1 ms. OFDM-IM technology is used for latency-tolerant communication since WB-I is converted to either narrowband dominant interference or narrowband interference by fractional subcarrier activation in OFDM-IM. In this way, URLLC is partially affected by latency-tolerant communication. It is shown that the proposed NOMA scheme significantly reduces the latency in comparison to classical NOMA scheme based on pure OFDM while guaranteeing 10(-5) reliability for URLLC, via both computer-based simulations and theoretical analysis.
机译:本文提出了在延迟关键型和容忍延迟的通信之间以非正交方式共享可用资源,以满足超可靠的低延迟通信(URLLC)的严格要求,并避免针对零散URLLC流量的基于授权的访问(GB)的频谱利用率低下。在提出的系统中,URLLC采用了无授权(GF)访问,以减少传输延迟,而GB访问则用于延迟容忍的通信。由于GF接入,通信之间会出现冲突,并且在两种通信中使用OFDM技术都会导致URLLC上的宽带干扰(WB-I)。因此,为了减少冲突对URLLC的影响,提出了一种基于正交频分复用(OFDM)和带索引调制的OFDM(OFDM-IM)的非正交多址接入(NOMA)方案,要求成功概率为99.999%。 1毫秒内由于WB-I通过OFDM-IM中的部分子载波激活被转换为窄带主导干扰或窄带干扰,因此OFDM-IM技术用于延迟等待时间通信。这样,URLLC会部分受耐延迟通信的影响。结果表明,通过基于计算机的仿真和理论分析,与基于纯OFDM的经典NOMA方案相比,提出的NOMA方案显着减少了时延,同时确保了URLLC的10(-5)可靠性。

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