On the Impact of Phase Noise on Active Cancellation in Wireless Full-Duplex
arXiv:1212.5462 · doi:10.1109/ACSSC.2012.6488952
Abstract
Recent experimental results have shown that full-duplex communication is possible for short-range communications. However, extending full-duplex to long-range communication remains a challenge, primarily due to residual self-interference even with a combination of passive suppression and active cancellation methods. In this paper, we investigate the root cause of performance bottlenecks in current full-duplex systems. We first classify all known full-duplex architectures based on how they compute their cancelling signal and where the cancelling signal is injected to cancel self-interference. Based on the classification, we analytically explain several published experimental results. The key bottleneck in current systems turns out to be the phase noise in the local oscillators in the transmit and receive chain of the full-duplex node. As a key by-product of our analysis, we propose signal models for wideband and MIMO full-duplex systems, capturing all the salient design parameters, and thus allowing future analytical development of advanced coding and signal design for full-duplex systems.
35 pages, Submitted to IEEE Transactions on Vehicular Technology, Dec 2012
Cited by in corpus (11)
- Passive Self-Interference Suppression for Full-Duplex Infrastructure Nodes
- Widely-Linear Digital Self-Interference Cancellation in Direct-Conversion Full-Duplex Transceiver
- Full-Duplex Transceiver System Calculations: Analysis of ADC and Linearity Challenges
- Simultaneous Transmission and Reception: Algorithm, Design and System Level Performance
- Analysis of Oscillator Phase-Noise Effects on Self-Interference Cancellation in Full-Duplex OFDM Radio Transceivers
- Self-Interference Cancellation with Nonlinear Distortion Suppression for Full-Duplex Systems
- Phase Noise Compensation for OFDM Systems
- Resource Allocation and Rate Gains in Practical Full-Duplex Systems
- Reference Receiver Based Digital Self-Interference Cancellation in MIMO Full-Duplex Transceivers
- Achievable Sum Rates of Half- and Full-Duplex Bidirectional OFDM Communication Links
- Universal Performance Bounds for Joint Self-Interference Cancellation and Data Detection in Full-Duplex Communications