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On feasibility of a multiplier-less phase-shifting scheme for digital phase modulation and its VLSI implementation

机译:一种无乘法器数字移相方案的可行性及其VLSI实现

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In this paper, a multiplier-less phase-shifting scheme for digital phase modulation is proposed and its implemantation for very large-scale integration (VLSI) is examined. The abrupt phase shift of carrier waveform, required after each data transition in digital phase-modulation scheme, is realized by incrementing the frequency of a voltage-controlled oscillator (VCO) for a short duration, immediately following the data transition. The momentary increase in VCO frequency is realized by feeding the VCO with narrow control pulses, derived from the baseband data stream using a simple supporting circuit. This work currently deals with the VLSI design for binary phase-shift keying (BPSK). However, the underlying concept is generic and hence capable of implementing other digital phase-modulation schemes, such as, quadrature PSK (QPSK), quadrature amplitude modulation (QAM) etc, with a programmable control circuit for the VCO. Thus, the proposed multiplier-less phase-shifting scheme can find useful application in broadband wireless networks employing adaptive modulation schemes.
机译:本文提出了一种用于数字相位调制的无乘法器相移方案,并研究了其在超大规模集成电路(VLSI)中的实现。在数字相位调制方案中,每个数据转换之后都需要载波波形的突然相移,这是通过在紧随数据转换之后的短时间内增加压控振荡器(VCO)的频率来实现的。 VCO频率的瞬时增加是通过使用简单的支持电路从基带数据流中获得的窄控制脉冲馈入VCO来实现的。这项工作目前涉及用于二进制相移键控(BPSK)的VLSI设计。然而,基本概念是通用的,因此能够利用用于VCO的可编程控制电路来实现其他数字相位调制方案,例如正交PSK(QPSK),正交幅度调制(QAM)等。因此,提出的无乘数相移方案可以在采用自适应调制方案的宽带无线网络中找到有用的应用。

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