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Systematic Optimization of Phase Noise of Voltage-Controlled Oscillators for Millimeter-Wave Radar

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서명/저자사항Systematic Optimization of Phase Noise of Voltage-Controlled Oscillators for Millimeter-Wave Radar.
개인저자Wang, Weihu.
단체저자명North Carolina State University. Electrical Engineering.
발행사항[S.l.]: North Carolina State University., 2018.
발행사항Ann Arbor: ProQuest Dissertations & Theses, 2018.
형태사항155 p.
기본자료 저록Dissertation Abstracts International 79-12B(E).
Dissertation Abstract International
ISBN9780438284524
학위논문주기Thesis (Ph.D.)--North Carolina State University, 2018.
일반주기 Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B.
Adviser: Brian Floyd.
요약Silicon technology has advanced to the point that millimeter-wave transceiver systems operating up to 100 GHz can be integrated to realize sophisticated functionality at reduced consumer cost. These millimeter-wave radar and radio systems requir
요약First, VCOs used in frequency-modulated continuous-wave (FMCW) radar applications require wide continuous tuning range and low phase noise simultaneously. These high-gain VCOs will typically have high phase noise, due to a high conversion from a
요약Second, the active circuit affects phase noise through the additional noise being injected into the tank as well as the signal power of oscillation, whereas power efficiency of the active device is also crucial for certain applications. In this
요약Third, as suggested by Leeson's equation, the passive Q has a significant impact on phase noise. To handle the passive device Q factor, the loss mechanism and accurate modeling of monolithic inductors have been studied thoroughly in the literatu
요약As will be shown in this dissertation, the systematic optimization of millimeter-wave VCO consists of technology analysis and performance prediction techniques in the aspects of passive and active devices, and will provide insight for future des
일반주제명Electrical engineering.
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