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Efficient Estimation of CFO-Affected OFDM BER Floor in Small Cells with Resource-Limited IoT End-Points

机译:利用资源限制物资源区终点的小型细胞中对CFO受CFO影响的CFO影响的高效估算

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摘要

Contemporary wireless networks dramatically enhance data rates and latency to become a key enabler of massive communication among various low-cost devices of limited computational power, standardized by the Long-Term Evolution (LTE) downscaled derivations LTE-M or narrowband Internet of Things (NB IoT), in particular. Specifically, assessment of the physical-layer transmission performance is important for higher-layer protocols determining the extent of the potential error recovery escalation upwards the protocol stack. Thereby, it is needed that the end-points of low processing capacity most efficiently estimate the residual bit error rate (BER) solely determined by the main orthogonal frequency-division multiplexing (OFDM) impairment–carrier frequency offset (CFO), specifically in small cells, where the signal-to-noise ratio is large enough, as well as the OFDM symbol cyclic prefix, preventing inter-symbol interference. However, in contrast to earlier analytical models with computationally demanding estimation of BER from the phase deviation caused by CFO, in this paper, after identifying the optimal sample instant in a power delay profile, we abstract the CFO by equivalent time dispersion (i.e., by additional spreading of the power delay profile that would produce the same BER degradation as the CFO). The proposed BER estimation is verified by means of the industry-standard LTE software simulator.
机译:当代无线网络大大提高了数据速率和延迟,成为有限计算能力的各种低成本设备之间大规模通信的关键推动因素,由长期演进(LTE)缩小衍生LTE-M或窄带互联网(NB)标准化(NB IOT),特别是。具体地,物理层传输性能的评估对于更高层次的协议来确定潜在误差恢复升级的程度的高度协议是重要的。由此,需要低处理能力的端点最有效地估计由主正交频分复用(OFDM)损伤载波频率偏移(CFO)的主要正交频分复用(OFDM),具体地估计电池,其中信噪比足够大,以及OFDM符号循环前缀,防止符号间干扰。然而,与早期的分析模型相比,通过CFO引起的阶段偏差来对比,在CFO引起的相位偏差中,在本文中,在识别功率延迟配置文件中的最佳样本瞬间之后,我们通过等效时间分散摘要CFO(即,电力延迟曲线的额外扩散,将产生与CFO相同的BER劣化)。通过行业标准LTE软件模拟器验证所提出的BER估计。

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