A Survey and Quantitative Evaluation of Integrated Circuit-Based Antenna Interfaces and Self-Interference Cancellers for Full-Duplex
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Gil Zussman | Harish Krishnaswamy | Igor Kadota | Aravind Nagulu | Manav Kohli | Aditya Gaonkar | Sasank Garikapati | Tingjun Chen | G. Zussman | H. Krishnaswamy | Aravind Nagulu | Aditya Gaonkar | Sasank Garikapati | Tingjun Chen | I. Kadota | Manav Kohli | A. Nagulu
[1] Gil Zussman,et al. 6.6 Full-Duplex Receiver with Wideband Multi-Domain FIR Cancellation Based on Stacked-Capacitor, N-Path Switched-Capacitor Delay Lines Achieving >54dB SIC Across 80MHz BW and >15dBm TX Power-Handling , 2021, 2021 IEEE International Solid- State Circuits Conference (ISSCC).
[2] Jeffrey G. Andrews,et al. Millimeter-Wave Full Duplex Radios: New Challenges and Techniques , 2020, IEEE Wireless Communications.
[3] H. Krishnaswamy,et al. Non-Magnetic Non-Reciprocal Microwave Components — State of the Art and Future Directions , 2021, IEEE Journal of Microwaves.
[4] Gil Zussman,et al. Multi-Watt, 1-GHz CMOS Circulator Based on Switched-Capacitor Clock Boosting , 2020, IEEE Journal of Solid-State Circuits.
[5] G. Zussman,et al. Performance Comparison of Time-Domain and Frequency-Domain RF Self-Interference Cancellation in Full-Duplex Wireless Systems , 2020, 2020 54th Asilomar Conference on Signals, Systems, and Computers.
[6] Jin Zhou,et al. Integrated Self-Adaptive and Power-Scalable Wideband Interference Cancellation for Full-Duplex MIMO Wireless , 2020, IEEE Journal of Solid-State Circuits.
[7] Gil Zussman,et al. Open-Access Full-Duplex Wireless in the ORBIT and COSMOS Testbeds , 2020, WiNTECH@MOBICOM.
[8] Jin Zhou,et al. An Integrated Full-Duplex/FDD Duplexer and Receiver Achieving 100MHz Bandwidth 58dB/48dB Self-Interference Suppression Using Hybrid-Analog-Digital Autonomous Adaptation Loops , 2020, 2020 IEEE/MTT-S International Microwave Symposium (IMS).
[9] Gil Zussman,et al. A Full-Duplex Receiver Leveraging Multiphase Switched-Capacitor-Delay Based Multi-Domain FIR Filter Cancelers , 2020, 2020 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[10] James F. Buckwalter,et al. A Full-Duplex Transceiver with CMOS RF Circulation and Code-Domain Signal Processing for 104 dB Self-Interference Rejection and Watt Level TX Power Handling , 2020, 2020 IEEE/MTT-S International Microwave Symposium (IMS).
[11] Ruonan Han,et al. A 3.4–4.6GHz In-Band Full-Duplex Front-End in CMOS Using a Bi-Directional Frequency Converter , 2020, 2020 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[12] Andrea Alù,et al. Ultra Compact, Ultra Wideband, DC-1GHz CMOS Circulator Based on Quasi-Electrostatic Wave Propagation in Commutated Switched Capacitor Networks , 2020, 2020 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[13] Nimrod Ginzberg,et al. A 1.5-3 GHz Quadrature Balanced Switched-Capacitor CMOS Transmitter for Full Duplex and Half Duplex Wireless Systems , 2020, 2020 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[14] Jeyanandh Paramesh,et al. Power-Efficient Design Techniques for mm-Wave Hybrid/Digital FDD/Full-Duplex MIMO Transceivers , 2020, IEEE Journal of Solid-State Circuits.
[15] Kamran Entesari,et al. A 0.5-to-3.5-GHz Full-Duplex Mixer-First Receiver With Cartesian Synthesized Self-Interference Suppression Interface in 65-nm CMOS , 2020, IEEE Transactions on Microwave Theory and Techniques.
[16] Harish Krishnaswamy,et al. Non-reciprocal electronics based on temporal modulation , 2020, Nature Electronics.
[17] Edoardo Charbon,et al. A Wideband Low-Power Cryogenic CMOS Circulator for Quantum Applications , 2020, IEEE Journal of Solid-State Circuits.
[18] James F. Buckwalter,et al. A Code-Domain RF Signal Processing Front End With High Self-Interference Rejection and Power Handling for Simultaneous Transmit and Receive , 2020, IEEE Journal of Solid-State Circuits.
[19] Dipankar Raychaudhuri,et al. Challenge: COSMOS: A city-scale programmable testbed for experimentation with advanced wireless , 2020, MobiCom.
[20] Gil Zussman,et al. 29.3 Non-Magnetic 0.18µm SOI Circulator with Multi-Watt Power Handling Based on Switched-Capacitor Clock Boosting , 2020, 2020 IEEE International Solid- State Circuits Conference - (ISSCC).
[21] L. Richard Carley,et al. 4.4 A 28/37GHz Scalable, Reconfigurable Multi-Layer Hybrid/Digital MIMO Transceiver for TDD/FDD and Full-Duplex Communication , 2020, 2020 IEEE International Solid- State Circuits Conference - (ISSCC).
[22] Hirley Alves,et al. Full-Duplex Communications for Future Wireless Networks , 2020 .
[23] Harish Krishnaswamy,et al. Analysis and Design of a Full-Duplex Two-Element MIMO Circulator-Receiver With High TX Power Handling Exploiting MIMO RF and Shared-Delay Baseband Self-Interference Cancellation , 2019, IEEE Journal of Solid-State Circuits.
[24] Gil Zussman,et al. Experimentation with Full-Duplex Wireless in the COSMOS Testbed , 2019, 2019 IEEE 27th International Conference on Network Protocols (ICNP).
[25] Jin Zhou,et al. A CMOS 0.5-2.5GHz Full-Duplex MIMO Receiver with Self-Adaptive and Power-Scalable RF/Analog Wideband Interference Cancellation , 2019, 2019 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[26] Kamran Entesari,et al. A 0.5-to-3.5 GHz Self-Interference-Canceling Receiver for In-Band Full-Duplex Wireless , 2019, 2019 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[27] Y. Wang,et al. 100MHz to 1GHz On-Chip Circulator with Integrated Driver Amplifiers , 2019, 2019 IEEE MTT-S International Microwave Symposium (IMS).
[28] Harish Krishnaswamy,et al. Non-Magnetic CMOS Switched-Transmission-Line Circulators With High Power Handling and Antenna Balancing: Theory and Implementation , 2019, IEEE Journal of Solid-State Circuits.
[29] Shahriar Mirabbasi,et al. A Hilbert Transform Equalizer Enabling 80 MHz RF Self-Interference Cancellation for Full-Duplex Receivers , 2019, IEEE Transactions on Circuits and Systems I: Regular Papers.
[30] Ahmed Kord,et al. CMOS Integrated Magnetless Circulators Based on Spatiotemporal Modulation Angular-Momentum Biasing , 2019, IEEE Transactions on Microwave Theory and Techniques.
[31] Kenneth E. Kolodziej,et al. In-Band Full-Duplex Technology: Techniques and Systems Survey , 2019, IEEE Transactions on Microwave Theory and Techniques.
[32] Harish Krishnaswamy,et al. 28.6 Full-Duplex 2×2 MIMO Circulator-Receiver with High TX Power Handling Exploiting MIMO RF and Shared-Delay Baseband Self-Interference Cancellation , 2019, 2019 IEEE International Solid- State Circuits Conference - (ISSCC).
[33] Rahul Singh,et al. 21.3 A Reconfigurable Bidirectional 28/37/39GHz Front-End Supporting MIMO-TDD, Carrier Aggregation TDD and FDD/Full-Duplex with Self-Interference Cancellation in Digital and Fully Connected Hybrid Beamformers , 2019, 2019 IEEE International Solid- State Circuits Conference - (ISSCC).
[34] Harish Krishnaswamy,et al. 28.5 Non-Magnetic 60GHz SOI CMOS Circulator Based on Loss/Dispersion-Engineered Switched Bandpass Filters , 2019, 2019 IEEE International Solid- State Circuits Conference - (ISSCC).
[35] Ping Gui,et al. 85–110-GHz CMOS Magnetic-Free Nonreciprocal Components for Full-Duplex Transceivers , 2019, IEEE Journal of Solid-State Circuits.
[36] Gil Zussman,et al. Wideband Full-Duplex Wireless via Frequency-Domain Equalization: Design and Experimentation , 2018, MobiCom.
[37] Hua Wang,et al. A Millimeter-Wave Polarization-Division-Duplex Transceiver Front-End With an On-Chip Multifeed Self-Interference-Canceling Antenna and an All-Passive Reconfigurable Canceller , 2018, IEEE Journal of Solid-State Circuits.
[38] Andrea Alù,et al. Fully-Integrated Non-Magnetic 180nm SOI Circulator with > 1W P1dB, >+50dBm IIP3 and High Isolation Across 1.85 VSWR , 2018, 2018 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[39] Harish Krishnaswamy,et al. Integrated Conductivity-Modulation-Based RF Magnetic-Free Nonreciprocal Components: Recent Results and Benchmarking , 2018, IEEE Antennas and Wireless Propagation Letters.
[40] Daniele Montanari,et al. An FDD Wireless Diversity Receiver With Transmitter Leakage Cancellation in Transmit and Receive Bands , 2018, IEEE Journal of Solid-State Circuits.
[41] Patrick Reynaert,et al. Bidirectional Communication Circuits for a 120-GHz PMF Data Link in 40-nm CMOS , 2018, IEEE Journal of Solid-State Circuits.
[42] Jacques C. Rudell,et al. Integrated CMOS transceivers design towards flexible full duplex (FD) and frequency division duplex (FDD) systems , 2018, 2018 IEEE Custom Integrated Circuits Conference (CICC).
[43] Foster F. Dai,et al. A full-duplex transceiver front-end RFIC with code-domain spread spectrum modulation for Tx self-interference cancellation and in-band jammer rejection , 2018, 2018 IEEE Custom Integrated Circuits Conference (CICC).
[44] Tong Zhang,et al. Wideband Dual-Injection Path Self-Interference Cancellation Architecture for Full-Duplex Transceivers , 2018, IEEE Journal of Solid-State Circuits.
[45] Hua Wang,et al. A 64GHz full-duplex transceiver front-end with an on-chip multifeed self-interference-canceling antenna and an all-passive canceler supporting 4Gb/s modulation in one antenna footprint , 2018, 2018 IEEE International Solid - State Circuits Conference - (ISSCC).
[46] Abhishek Agrawal,et al. A 0.55-to-0.9GHz 2.7dB NF full-duplex hybrid-coupler circulator with 56MHz 40dB TX SI suppression , 2018, 2018 IEEE International Solid - State Circuits Conference - (ISSCC).
[47] Jacques C. Rudell,et al. A broadband and deep-TX self-interference cancellation technique for full-duplex and frequency-domain-duplex transceiver applications , 2018, 2018 IEEE International Solid - State Circuits Conference - (ISSCC).
[48] Gil Zussman,et al. Hybrid Scheduling in Heterogeneous Half-and Full-Duplex Wireless Networks , 2018, IEEE INFOCOM 2018 - IEEE Conference on Computer Communications.
[49] Andrea Alù,et al. Magnet-Less Circulators Based on Spatiotemporal Modulation of Bandstop Filters in a Delta Topology , 2017, IEEE Transactions on Microwave Theory and Techniques.
[50] Ahmed Kord,et al. Magnetic-free radio frequency circulator based on spatiotemporal commutation of MEMS resonators , 2018, 2018 IEEE Micro Electro Mechanical Systems (MEMS).
[51] Harish Krishnaswamy,et al. A Millimeter-Wave Non-Magnetic Passive SOI CMOS Circulator Based on Spatio-Temporal Conductivity Modulation , 2017, IEEE Journal of Solid-State Circuits.
[52] Harish Krishnaswamy,et al. Synchronized conductivity modulation to realize broadband lossless magnetic-free non-reciprocity , 2017, Nature Communications.
[53] Patrick Reynaert,et al. A 120GHz in-band full-duplex PMF transceiver with tunable electrical-balance duplexer in 40nm CMOS , 2017, ESSCIRC 2017 - 43rd IEEE European Solid State Circuits Conference.
[54] Jacques C. Rudell,et al. A low-noise reconfigurable full-duplex front-end with self-interference cancellation and harmonic-rejection power amplifier for low power radio applications , 2017, ESSCIRC 2017 - 43rd IEEE European Solid State Circuits Conference.
[55] Lucas Calderin,et al. An FD/FDD transceiver with RX band thermal, quantization, and phase noise rejection and >64dB TX signal cancellation , 2017, 2017 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[56] A. El Sayed,et al. A full-duplex receiver with 80MHz bandwidth self-interference cancellation circuit using baseband Hilbert transform equalization , 2017, 2017 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[57] R. Castello,et al. Low power wideband receiver with RF Self-Interference Cancellation for Full-Duplex and FDD wireless Diversity , 2017, 2017 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[58] Gil Zussman,et al. Integrated Full Duplex Radios , 2017, IEEE Communications Magazine.
[59] Harish Krishnaswamy,et al. A CMOS Passive LPTV Nonmagnetic Circulator and Its Application in a Full-Duplex Receiver , 2017, IEEE Journal of Solid-State Circuits.
[60] Jacques C. Rudell,et al. 18.1 A 1.7-to-2.2GHz full-duplex transceiver system with >50dB self-interference cancellation over 42MHz bandwidth , 2017, 2017 IEEE International Solid-State Circuits Conference (ISSCC).
[61] Harish Krishnaswamy,et al. 17.2 A 28GHz magnetic-free non-reciprocal passive CMOS circulator based on spatio-temporal conductance modulation , 2017, 2017 IEEE International Solid-State Circuits Conference (ISSCC).
[62] Alyosha Molnar,et al. A Wideband Fully Integrated Software-Defined Transceiver for FDD and TDD Operation , 2017, IEEE Journal of Solid-State Circuits.
[63] Yuanxun Ethan Wang,et al. Ultra-Wide Band Non-reciprocity through Sequentially-Switched Delay Lines , 2017, Scientific Reports.
[64] Gil Zussman,et al. Resource Allocation and Rate Gains in Practical Full-Duplex Systems , 2015, IEEE/ACM Transactions on Networking.
[65] Aydin Babakhani,et al. A Full-Duplex Single-Chip Transceiver With Self-Interference Cancellation in 0.13 $\mu$ m SiGe BiCMOS for Electron Paramagnetic Resonance Spectroscopy , 2016, IEEE Journal of Solid-State Circuits.
[66] Gil Zussman,et al. 1 Chip 2x the bandwidth , 2016, IEEE Spectrum.
[67] Christopher Newman,et al. A fully integrated Software-Defined FDD transceiver tunable from 0.3-to-1.6 GHz , 2016, 2016 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[68] Aydin Babakhani,et al. A single-chip in-band full-duplex low-IF transceiver with self-interference cancellation , 2016, 2016 IEEE MTT-S International Microwave Symposium (IMS).
[69] Harish Krishnaswamy,et al. Magnetic-free non-reciprocity based on staggered commutation , 2016, Nature Communications.
[70] Hooman Darabi,et al. Low-Loss Integrated Passive CMOS Electrical Balance Duplexers With Single-Ended LNA , 2016, IEEE Transactions on Microwave Theory and Techniques.
[71] Kenneth E. Kolodziej,et al. Multitap RF Canceller for In-Band Full-Duplex Wireless Communications , 2016, IEEE Transactions on Wireless Communications.
[72] Jin Zhou,et al. 9.8 Receiver with integrated magnetic-free N-path-filter-based non-reciprocal circulator and baseband self-interference cancellation for full-duplex wireless , 2016, 2016 IEEE International Solid-State Circuits Conference (ISSCC).
[73] Harish Krishnaswamy,et al. A 60 GHz CMOS Full-Duplex Transceiver and Link with Polarization-Based Antenna and RF Cancellation , 2016, IEEE Journal of Solid-State Circuits.
[74] Yang-Seok Choi,et al. Full-Duplex Mobile Device - Pushing The Limits , 2014, ArXiv.
[75] Sofie Pollin,et al. Real-time RF self-interference cancellation for in-band full duplex , 2015, 2015 IEEE International Symposium on Dynamic Spectrum Access Networks (DySPAN).
[76] Eric A. M. Klumperink,et al. An In-Band Full-Duplex Radio Receiver With a Passive Vector Modulator Downmixer for Self-Interference Cancellation , 2015, IEEE Journal of Solid-State Circuits.
[77] Jin Zhou,et al. Integrated Wideband Self-Interference Cancellation in the RF Domain for FDD and Full-Duplex Wireless , 2015, IEEE Journal of Solid-State Circuits.
[78] A. Chakrabarti,et al. A 60 GHz same-channel full-duplex CMOS transceiver and link based on reconfigurable polarization-based antenna cancellation , 2015, 2015 IEEE Radio Frequency Integrated Circuits Symposium (RFIC).
[79] Athanasios V. Vasilakos,et al. Full duplex techniques for 5G networks: self-interference cancellation, protocol design, and relay selection , 2015, IEEE Communications Magazine.
[80] Jin Zhou,et al. 19.1 Receiver with >20MHz bandwidth self-interference cancellation suitable for FDD, co-existence and full-duplex applications , 2015, 2015 IEEE International Solid-State Circuits Conference - (ISSCC) Digest of Technical Papers.
[81] Chan-Byoung Chae,et al. Prototyping real-time full duplex radios , 2015, IEEE Communications Magazine.
[82] Dong Yang,et al. A Wideband Highly Integrated and Widely Tunable Transceiver for In-Band Full-Duplex Communication , 2015, IEEE Journal of Solid-State Circuits.
[83] Eric A. M. Klumperink,et al. 19.2 A self-interference-cancelling receiver for in-band full-duplex wireless with low distortion under cancellation of strong TX leakage , 2015, 2015 IEEE International Solid-State Circuits Conference - (ISSCC) Digest of Technical Papers.
[84] Dongkyu Kim,et al. A Survey of In-Band Full-Duplex Transmission: From the Perspective of PHY and MAC Layers , 2015, IEEE Communications Surveys & Tutorials.
[85] James F. Buckwalter,et al. Millimeter-Wave Dual-Band, Bidirectional Amplifier and Active Circulator in a CMOS SOI Process , 2014, IEEE Transactions on Microwave Theory and Techniques.
[86] Hooman Darabi,et al. A 1.6–2.2GHz 23dBm low loss integrated CMOS duplexer , 2014, Proceedings of the IEEE 2014 Custom Integrated Circuits Conference.
[87] Yuanxun Ethan Wang,et al. Nonreciprocal Components With Distributedly Modulated Capacitors , 2014, IEEE Transactions on Microwave Theory and Techniques.
[88] Jean-Michel Redoute,et al. High-Resolution Passive Phase Shifters for Adaptive Duplexing Applications in SOS Process , 2014, IEEE Transactions on Microwave Theory and Techniques.
[89] Alyosha Molnar,et al. A widely tunable active duplexing transceiver with same-channel concurrent RX/TX and 30dB RX/TX isolation , 2014, 2014 IEEE Radio Frequency Integrated Circuits Symposium.
[90] Mikko Valkama,et al. Widely Linear Digital Self-Interference Cancellation in Direct-Conversion Full-Duplex Transceiver , 2014, IEEE Journal on Selected Areas in Communications.
[91] Risto Wichman,et al. In-Band Full-Duplex Wireless: Challenges and Opportunities , 2013, IEEE Journal on Selected Areas in Communications.
[92] Sachin Katti,et al. Full duplex radios , 2013, SIGCOMM.
[93] Ahmed M. Eltawil,et al. Rate Gain Region and Design Tradeoffs for Full-Duplex Wireless Communications , 2013, IEEE Transactions on Wireless Communications.
[94] Kenneth E. Kolodziej,et al. Optimal tuning of analog self-interference cancellers for full-duplex wireless communication , 2012, 2012 50th Annual Allerton Conference on Communication, Control, and Computing (Allerton).
[95] N. K. Shankaranarayanan,et al. Full- or half-duplex? A capacity analysis with bounded radio resources , 2012, 2012 IEEE Information Theory Workshop.
[96] Ashutosh Sabharwal,et al. Experiment-Driven Characterization of Full-Duplex Wireless Systems , 2011, IEEE Transactions on Wireless Communications.
[97] G. Carchon,et al. Power and noise limitations of active circulators , 2000 .
[98] Y. Ayasli,et al. Field effect transistor circulators , 1989, International Magnetics Conference.
[99] A. W. Keen,et al. Realisation of the circulator concept using differential-input operational amplifiers , 1968 .
[100] S. Tanaka,et al. Active circulators—The realization of circulators using transistors , 1965 .