Tang et al., 2025 - Google Patents
Adaptive Microwave Photonic Multi-Coset Sampling With Optimized Sampling PatternTang et al., 2025
- Document ID
- 8653422997588814706
- Author
- Tang X
- Cai Y
- Li P
- Zhang Y
- Pan S
- Publication year
- Publication venue
- IEEE Transactions on Microwave Theory and Techniques
External Links
Snippet
An adaptive microwave photonic multi-coset sampling (MCS) method is proposed to enable accurate and efficient sub-Nyquist acquisition of multiband radio frequency (RF) signals. The method integrates an activated Nyquist band sensor and a sampling pattern optimization …
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/60—Receivers
- H04B10/61—Coherent receivers i.e., optical receivers using an optical local oscillator
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/60—Receivers
- H04B10/66—Non-coherent receivers, e.g. using direct detection
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L27/00—Modulated-carrier systems
- H04L27/26—Systems using multi-frequency codes
- H04L27/2601—Multicarrier modulation systems
- H04L27/2647—Arrangements specific to the receiver
- H04L27/2655—Synchronisation arrangements
- H04L27/2668—Details of algorithms
- H04L27/2673—Details of algorithms characterised by synchronisation parameters
- H04L27/2675—Pilot or known symbols
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/25—Arrangements specific to fibre transmission
- H04B10/2575—Radio-over-fibre, e.g. radio frequency signal modulated onto an optical carrier
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/07—Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN109298239B (en) | Photon undersampling system and method for microwave spectrum measurement | |
| US11630368B2 (en) | Radio frequency passband signal generation using photonics | |
| US11032628B2 (en) | Electronic demodulation of optically phase demodulated signals | |
| US9287993B1 (en) | RF channelizer based on parametrically generated combs derived from a single master seed | |
| US8618966B2 (en) | Photonic assisted analog-to-digital conversion using phase detection | |
| JP5736837B2 (en) | Optical receiver | |
| US8902095B2 (en) | Photonic assisted optical under-sampling with non-uniform sample intervals | |
| US8466819B2 (en) | System and method for selective wavelength interleaved filtered technique (SWIFT) ADC | |
| US20210266063A1 (en) | Integrated photonic microwave sampling system | |
| US11153015B2 (en) | Comb assisted spread-spectrum method | |
| Dai et al. | Broadband photonic radio frequency (RF) channelization based on coherent optical frequency combs and polarization I/Q demodulation | |
| Li et al. | Photonic-assisted approach to simultaneous measurement of frequency and angle-of-arrival | |
| CN108692816B (en) | Fast spectrum measurement method and device based on image frequency suppression | |
| Deakin et al. | Frequency interleaving dual comb photonic ADC with 7 bits ENOB up to 40 GHz | |
| Onori et al. | A 0–40 GHz RF tunable receiver based on photonic direct conversion and digital feed-forward lasers noise cancellation | |
| Schermer et al. | Non-uniform sub-nyquist optical sampling by acousto-optic delay modulation | |
| Tang et al. | Adaptive Microwave Photonic Multi-Coset Sampling With Optimized Sampling Pattern | |
| He et al. | High-accuracy sweep-free BOTDA enabled by simultaneous full-field Brillouin spectra measurement | |
| Guo et al. | Photonics-assisted compressive sampling system for wideband spectrum sensing | |
| Feldster et al. | Optical under-sampling and reconstruction of several bandwidth-limited signals | |
| Esman et al. | High resolution broadband photonic sampled ADC: 8.0 ENOB at 40 GHz | |
| Tang et al. | High-Precision and Large-Scale Phase-Based Laser Ranging With High Receiving Sensitivity via Multi-Tone Modulation and Frequency-Shift-Based Coherent Low-Frequency Detection | |
| US20250060400A1 (en) | Simultaneous multi-band rydberg receiver/sensor | |
| US20130302027A1 (en) | Optical measurement method and system | |
| Dai et al. | Optical-frequency-comb-based broadband radio frequency channelization |