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Efficient Preamble Design Technique for Millimeter-Wave Cellular Systems with Beamforming

机译:具有波束成形的毫米波蜂窝系统的高效前同步码设计技术

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摘要

The processing time for beam training in millimeter-wave (mmWave) cellular systems can be significantly reduced by a code division multiplexing (CDM)-based technique, where multiple beams are transmitted simultaneously with their corresponding Tx beam IDs (BIDs) in the preamble. However, mmWave cellular systems with CDM-based preambles require a large number of cell IDs (CIDs) and BIDs, and a high computational complexity for CID and BID (CBID) searches. In this paper, a new preamble design technique that can increase the number of CBIDs significantly is proposed, using a preamble sequence constructed by a combination of two Zadoff-Chu (ZC) sequences. An efficient technique for the CBID detection is also described for the proposed preamble. It is shown by simulations using a simple model of an mmWave cellular system that the proposed technique can obtain a significant reduction in the complexity of the CBID detection without a noticeable performance degradation, compared to the previous technique.
机译:通过基于码分复用(CDM)的技术,可以大大减少毫米波(mmWave)蜂窝系统中波束训练的处理时间,在该技术中,多个波束与前导中的相应Tx波束ID(BID)同时发送。但是,具有基于CDM的前同步码的mmWave蜂窝系统需要大量的小区ID(CID)和BID,并且对于CID和BID(CBID)搜索具有很高的计算复杂度。本文提出了一种新的前导码设计技术,该技术可以使用由两个Zadoff-Chu(ZC)序列组合构成的前导码序列来显着增加CBID的数量。还针对提出的前同步码描述了一种用于CBID检测的有效技术。通过使用毫米波蜂窝系统的简单模型进行的仿真显示,与以前的技术相比,所提出的技术可以显着降低CBID检测的复杂性,而不会出现明显的性能下降。

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