{"title":"Narrow Bandwidth PLL Based Multiplier Phase Detector for PSK Modulator","authors":"L. Kirasamuthranon, P. Wardkein, J. Koseeyaporn","doi":"10.1109/ICCCS49078.2020.9118523","DOIUrl":null,"url":null,"abstract":"Among digital to analog modulation, phase shift keying is superior than amplitude shift keying and frequency shift keying. Especially, the quadrature phase shift keying is the most popular modulating technique. The reason is because this modulation is effective in bandwidth usage. However, the sudden change in amplitude during inversely phase changed, e.g. $\\pi/4\\Rightarrow-3\\pi/4$, requires more bandwidth for transmitting signal. Later, a QPSK modulator based phase locked loop (PLL) [6] is proposed which shows that its QPSK signal consumes less bandwidth compared to the conventional QPSK modulator [7], [8]. However, further study of [6] founds that redundant high frequency components exist in the output of phase detector (PD). In this paper, a new structure of PD of the PLL is proposed which is based on a multiplier circuit. The mathematical analysis of this circuit shows that there is only one high frequency component in the PD output. The simulation result also confirms well with the theoretical analysis which is found that the proposed PD can reduce roughly 29% of bandwidth usage compared to that of [6]. When this PLL based the proposed PD is applied for QPSK modulator, it results in less interference of the QPSK output than that of [6] and [7]. The obtained QPSK signal is superior in reducing the amount of interference to adjacent signals.","PeriodicalId":105556,"journal":{"name":"2020 5th International Conference on Computer and Communication Systems (ICCCS)","volume":"26 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2020-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2020 5th International Conference on Computer and Communication Systems (ICCCS)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICCCS49078.2020.9118523","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
Among digital to analog modulation, phase shift keying is superior than amplitude shift keying and frequency shift keying. Especially, the quadrature phase shift keying is the most popular modulating technique. The reason is because this modulation is effective in bandwidth usage. However, the sudden change in amplitude during inversely phase changed, e.g. $\pi/4\Rightarrow-3\pi/4$, requires more bandwidth for transmitting signal. Later, a QPSK modulator based phase locked loop (PLL) [6] is proposed which shows that its QPSK signal consumes less bandwidth compared to the conventional QPSK modulator [7], [8]. However, further study of [6] founds that redundant high frequency components exist in the output of phase detector (PD). In this paper, a new structure of PD of the PLL is proposed which is based on a multiplier circuit. The mathematical analysis of this circuit shows that there is only one high frequency component in the PD output. The simulation result also confirms well with the theoretical analysis which is found that the proposed PD can reduce roughly 29% of bandwidth usage compared to that of [6]. When this PLL based the proposed PD is applied for QPSK modulator, it results in less interference of the QPSK output than that of [6] and [7]. The obtained QPSK signal is superior in reducing the amount of interference to adjacent signals.
在数模调制中,相移键控优于移幅键控和移频键控。其中,正交相移键控是最常用的调制技术。原因是这种调制在带宽使用方面是有效的。然而,在反相位变化过程中,振幅的突然变化,例如$\pi/4\Rightarrow-3\pi/4$,需要更多的带宽来传输信号。后来,提出了一种基于QPSK调制器的锁相环(PLL)[6],与传统的QPSK调制器[7],[8]相比,其QPSK信号消耗的带宽更小。然而,进一步研究[6]发现,在鉴相器(PD)的输出中存在冗余的高频成分。本文提出了一种基于乘法器电路的锁相环PD的新结构。该电路的数学分析表明,在PD输出中只有一个高频分量。仿真结果与理论分析结果相吻合,发现所提出的PD可以减少约29% of bandwidth usage compared to that of [6]. When this PLL based the proposed PD is applied for QPSK modulator, it results in less interference of the QPSK output than that of [6] and [7]. The obtained QPSK signal is superior in reducing the amount of interference to adjacent signals.