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Frequency measurement technology

Author: Ignacio Llamas-Garro; Marcos Tavares de Melo; Jung-Mu Kim
Publisher: Boston : Artech House, [2018] ©2018
Series: Artech House microwave library.
Edition/Format:   Print book : EnglishView all editions and formats
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Document Type: Book
All Authors / Contributors: Ignacio Llamas-Garro; Marcos Tavares de Melo; Jung-Mu Kim
ISBN: 9781630811716 1630811718
OCLC Number: 1021057371
Description: x, 207 pages : illustrations ; 24 cm.
Contents: Chapter 1 --
1.1. Overview --
1.2. Introduction To RF/Microwave Frequency Measurement --
1.2.1. RF/microwave Measurement Theory --
1.2.2. Frequency Measurement Instrumentation --
1.2.3. Frequency Detection Architectures --
Chapter 2 --
2.1. Overview --
2.2. Introduction To Instantaneous Frequency Measurement --
2.3. IFM Receivers --
2.3.1. Analog Frequency Discriminators --
2.3.2. Digital Frequency Discriminators --
2.4. IFM Designs --
2.4.1. IFM Using Interferometers Based on Delay Lines --
2.4.2. IFM Using Multiband-stop Filters --
2.5. Conclusions and Future Work --
Chapter 3 --
3.1. Overview --
3.2. Introduction to RFM --
3.3. RFM Receiver Architectures --
3.3.1. Block Diagrams and Components of an RFM Receiver --
3.3.2. A Comparison between IFM and RFM --
3.3.3. Elements for Reconfiguration --
3.4. RFM DESIGNS --
3.4.1. RFM Using PIN Diodes with 2 Bits for Frequency Identification --
3.4.2. RFM Using PIN Diodes with 4 Bits for Frequency Identification --
3.5. Conclusions --
Chapter 4 --
4.1. Overview --
4.2. Introduction to RF/Microwave Frequency Measurement --
4.3. IFM Principle --
4.3.1. Electronic IFM --
4.3.2. Photonic IFM --
4.4. IFM Based on Optical Interferometry --
4.4.1. IFM Based on Noncoherent Optical Delays --
4.4.2. IFM Based on Coherent Optical Delays --
4.5. IFM Based on Polarization Effects --
4.5.1. IFM Based on Measurement of Stokes Parameters --
4.5.2. IFM Based on Polarization Interferometers --
4.5.3. IFM Based on Polarization Modulator and Polarization Adjustments... --
4.5.4. IFM Based on Polarization Modulators and Modulation Bias Adjustments --
4.5.5. IFM Based on Polarization Modulator and Dispersion --
4.5.6. IFM Based on Polarization Microwave Photonic Filter Pairs --
4.6. IFM Based on Optical Filtering --
4.6.1. IFM Based on Mach-Zehnder Interferometer Optical Filters --
4.6.2. IFM Based on Ring-resonator Optical Filters --
4.6.3. IFM Based on the Bragg Grating Optical Filters --
4.7. IFM Based on Frequency to time Mapping --
4.7.1. Single RF Signal Measurement --
4.7.2. Multiple RF Signal Measurement --
4.8. IFM Based on Optical Mixing --
4.8.1. IFM Based on Optoelectrical Mixing --
4.8.2. IFM Based on All Optical Mixing --
4.9. IFM Based On Stimulated Brillouin Scattering --
4.9.1. Stimulated Brillouin Scattering in Optical Fibers --
4.9.2. IFM Based on SBS Resonance Shift --
4.9.3. IFM Based on SBS Resonance and Channelizing Probe Array --
4.9.4. IFM Based on SBS Resonance Channelizers --
4.10. Other Photonic IFM Approaches --
4.10.1. IFM Based on Microwave Photonic Filters --
4.10.2. IFM Based on Quadrature Optical Filter Pairs --
4.10.3. IFM Based on a Bank of Offset Optical Filters --
4.10.4. IFM Based on Phase to Intensity Modulation Conversions --
4.10.5. IFM Based on Photonic Assisted Samplings and Downconversions --
4.11. Discussion --
4.12. Conclusion.
Series Title: Artech House microwave library.
Responsibility: Ignacio Llamas-Garro, Marcos Tavares de Melo, Jung-Mu Kim.

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