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Improved Physical Downlink Control Channel for 3GPP Massive Machine Type Communications

机译:用于3GPP大量机床类型通信的改进物理下行链路控制通道

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To provide cellular connectivity to massive machine type communications, 3rd Generation Partnership Project (3GPP) has come up with an enhanced machine type communications (eMTC) standard. The eMTC is a low power wide area network technology. It can cater to the needs of massive MTC devices providing voice support, required data rates, low latency, wide area coverage, and mobility. The eMTC is built on LTE framework and necessary modifications are made as per the requirements of MTC. A chunk of 1.4 MHz from the LTE bandwidth is required to deploy eMTC. Similar to LTE, delivering Downlink Control Information (DCI) to end devices is crucial in eMTC. The DCI carries information about modulation and coding scheme, uplink grant, and scheduling of downlink resources. The DCI of multiple eMTC devices are multiplexed over a region of time and frequency resources. Hence, the eMTC devices have to blindly decode this control channel region. Significant computational power is required from an eMTC device to decode this region. This paper explains the processes involved in the delivery of DCI for eMTC. We propose a novel mapping of repetition and aggregation level to each eMTC device based on the available channel state information. We identify the under utilization of the time and frequency resources in the existing eMTC scheme used for rate matching the DCI information bits. We present system level simulations considering the proposed novel mapping. Further, through extensive simulations and hardware emulations, we show that the proposed rate matching scheme results in significant improvement in performance as compared to the existing scheme.
机译:为了提供与大量机床类型通信的蜂窝连接,第三代合作伙伴计划(3GPP)提出了增强的机器类型通信(EMTC)标准。 EMTC是一种低功率广域网技术。它可以迎合提供语音支持的大规模MTC设备的需求,所需的数据速率,低延迟,广域覆盖和移动性。 EMTC基于LTE框架,并根据MTC的要求进行必要的修改。需要从LTE带宽的1.4 MHz块进行部署EMTC。类似于LTE,将下行链路控制信息(DCI)传送到终端设备在EMTC至关重要。 DCI携带有关调制和编码方案,上行链路许可和下行链路资源的调度的信息。多个EMTC设备的DCI在时间和频率资源区域上复用。因此,EMTC设备必须盲目地解码该控制信道区域。从EMTC设备解码该区域需要显着的计算能力。本文介绍了EMTC交付DCI所涉及的过程。我们提出了基于可用信道状态信息的每个EMTC设备的重复和聚合级别的新颖映射。我们在用于匹配DCI信息比特的速率匹配的速率下,确定利用的利用时间和频率资源。考虑到所提出的小说映射,我们呈现系统级模拟。此外,通过广泛的模拟和硬件仿真,我们表明所提出的速率匹配方案与现有方案相比,性能的显着提高。

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