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A Novel Design of Downlink Control Information Encoding and Decoding Based on Polar Codes

机译:基于极性码的下行控制信息编码与解码的新设计

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In legacy long term evolution (LTE) networks, multiple transmission modes are defined to cater to diverse wireless environment and improve the spectrum utilization. However, constrained by user equipment (UE) processing capability on blind detection of downlink control information (DCI), two transmission modes are allowed to be configured to UE simultaneously. In recent 5G standardization, the polar codes have supplanted the tail biting convolution codes (TBCC), becoming the channel coding scheme for downlink control information (DCI). Motivated by its successive decoding property, a novel design of DCI encoding and decoding is proposed in this paper. The proposed scheme could support dynamic configuration of transmission modes with decreasing the complexity of blind detection. Evaluation results from link level simulations show that the performance loss compared to conventional encoding/decoding scheme is generally negligible and the proposed scheme can comply with the false alarm rate (FAR) target of 5G standardization.
机译:在传统的长期演进(LTE)网络中,定义了多种传输模式以适应各种无线环境并提高频谱利用率。然而,受用户设备(UE)对下行链路控制信息(DCI)的盲检测的处理能力的限制,允许两种传输模式同时配置给UE。在最近的5G标准化中,极性码已经取代了咬尾卷积码(TBCC),成为下行链路控制信息(DCI)的信道编码方案。鉴于其连续解码特性,本文提出了一种新颖的DCI编码和解码设计。所提出的方案可以支持传输模式的动态配置,同时降低盲检测的复杂度。链路级仿真的评估结果表明,与常规编码/解码方案相比,性能损失通常可以忽略不计,并且该方案可以符合5G标准化的误报率(FAR)目标。

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