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A New Perspective on the Initial Uplink Synchronization Problem
DOI:10.1109/ACCESS.2020.3039989.png)
摘要
En 中文
We explore the frequency domain properties of the signal model associated with the initial uplink synchronization (IUS) problem, and provide some new insights. We show that the adverse effects of carrier frequency offset (CFO) are confined in a small region in the frequency domain. We present a new code design approach that avoids the above mentioned region to cancel the adverse effects of CFO. In this design the codes of different users occupy mutually disjoint intervals on the frequency axis. In this way we minimize the interference between different codes, and thereby, allow considerably large number of simultaneous IUS users in the system. For the proposed codes, we design a simple energy detector. This detector relies on classical results from statistical detection theory. We also propose a simple timing offset estimation technique, which requires us to locate the maximum in a periodogram. The resulting detection-estimation algorithms are simple, non-iterative, fast and accurate. The utility of the proposed design is illustrated using numerical simulation results.
Keyword:
Uplink
Synchronization
OFDM
Frequency-domain analysis
Propagation delay
Matching pursuit algorithms
Channel estimation
LTE random access
uplink synchronization
sinusoidal codes
code design
low complexity algorithms
multi-user detection
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期刊
IF:
3.6
论文数:
9.8W
被引数:
29.4W
机构
引用论文
Zadoff-Chu Sequence Design for Random Access Initial Uplink Synchronization in LTE-Like Systems类LTE系统中随机接入初始上行同步的Zadoff-Chu序列设计
Grant-Free Uplink Transmission With Multi-Codebook-Based Sparse Code Multiple Access (MC-SCMA)具有基于多码本的稀疏码多址 (mc-scma) 的免授权上行链路传输
IEEE ACCESS
IF3.6
A Multiuser Detection Algorithm for Random Access Procedure With the Presence of Carrier Frequency Offsets in LTE SystemsLTE系统中存在载波频率偏移的随机接入过程的多用户检测算法

