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引用次数: 0
摘要
物理上行控制通道(Physical Uplink Control Channel, PUCCH)是一种传输通道,用于传输对下行(DL)数据包的确认响应和重传请求(HARQ ACK/NACK),发送业务调度请求(SR),传输信道质量信息(CQI)和多输入多输出(MIMO)反馈(如秩指标(RI)或预编码矩阵指标(PMI)),这些反馈信息可以从一个或多个用户设备(UE)在控制信道上传输到演进节点基站(eNB)。在本文中,我们分析了现有的PUCCH设计,它是LTE上行处理链的一部分,并提出了在不增加底层硬件资源变化的情况下优化上行控制路径性能的方法。提出的设计将PUCCH解码器的处理器资源消耗减少了一半(最佳情况),并简化了LTE第1层调度器设计,从而使系统能够实现更高的吞吐量。结果通过黑盒测试与系统支持的配置进行比较。所提出的改进可以用于LTE上行链路和下行链路处理链的其他部分,以获得性能提升。
Performance enhancement via efficient buffer and cache utilization in Uplink Control Path for LTE
Physical Uplink Control Channel (PUCCH) is a transmission channel used to transport acknowledgment responses and retransmission requests (Hybrid Automatic Repeat Request (HARQ ACK/NACK)) for Downlink (DL) data packets, send service scheduling requests (SR), transfer channel quality information (CQI) and Multiple Input Multiple Output (MIMO) feedback (such as Rank Indicator (RI) or Precoding Matrix Indicator (PMI) from one or more User Equipment (UE) that can transmit on the control channel to an Evolved Node-Base Station (eNB). In this paper we analyze an existing PUCCH design, which is a part of LTE Uplink Processing Chain and propose methods to optimize the performance of the Uplink Control Path with no incremental change in underlying hardware resources. The proposed design decreases the processor resource consumption by the PUCCH decoder by half (best case) and simplifies LTE Layer 1 Scheduler Design, thereby allowing the system to achieve higher throughput. The results are compared via black box testing over configuration supported by the system. The proposed improvements can be leveraged in other parts of LTE Uplink and Downlink Processing Chain for performance gains.