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A Parallelized Phase-Frequency Detector based Modified LSPF-DPLL for Wireless Communication – Comparative Study with Modified LSPF-DPLL

机译:一种基于并行化的相位频率检测器的用于无线通信的修改LSPF-DPLL - 改进LSPF-DPLL的比较研究

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In recent times, communication technologies have evolved at a brisk rate. 3G and 4G networks have already been widely deployed. However, with increase in user number and applications, alternative strategies in the form of 5G systems have been devised. Thus, it is desirable to have communication systems which can provide low error levels with minimum delay. DPLL based systems play a versatile role in modern day communication receivers. Popular DPLL receiver packages based on Zero Crossing (ZC) and Least Square Polynomial Fitting (LSPF) techniques have been recently proposed to serve standalone reception in communcation setups. Such systems involve intensive computations and thus show excellant error performance ; but are bottlenecked by poor time performance. The LSPF-DPLL system was aided by a Modified Phase Resolving Numerically Controlled Oscilator (MPR-NCO) to achieve both improved error and time performance in another subsequent DPLL design that was proposed of late. This design is modified in the DPLL system proposed here by incorporating a Parallelized LSPF based Phase-Frequency Detector to achieve furhter improvements in time performance while maintaining the system’s error performance.
机译:最近,通信技术已经以快步发展而进化。 3G和4G网络已被广泛部署。但是,随着用户号码和应用程​​序的增加,已经设计了5G系统形式的替代策略。因此,希望具有可以提供最小延迟的低误差水平的通信系统。基于DPLL的系统在现代通信接收器中发挥了多功能作用。最近已经提出了基于过零(ZC)和最小二乘多项式拟合(LSPF)技术的流行DPLL接收器包,以在通信设置中服务于独立的接收。这种系统涉及密集的计算,从而显示出优秀的错误性能;但是通过时间差的绩效令人震惊。 LSPF-DPLL系统由修改的相位解析数字控制振荡器(MPR-NCO)辅助,以实现迟到的另一种后续DPLL设计中的改进的误差和时间性能。通过结合并行LSPF的相位频率检测器在此提出的DPLL系统中修改了该设计,以实现时间性能的捕获改进,同时保持系统的错误性能。

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