Full-duplex spectrum sensing in cognitive radios using optical self-interference cancellation

M. P. Chang, P. Prucnal, Yanhua Deng
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引用次数: 9

Abstract

We propose and experimentally demonstrate an optical self-interference cancellation system to realize full-duplex spectrum sensing in cognitive radios. The optical system is an analog radio-frequency front-end module, which cancels in-band self-interference, enabling a radio to simultaneously transmit and receive signals. The system achieves 83 dB of narrowband interference cancellation, and 60 dB of cancellation of a 50 MHz frequency-modulated signal. The center frequency of the optical canceler is freely tunable across the radio frequency spectrum, limited only by the bandwidth of the photodetector and the electro-optic modulators to 10 GHz. The system is modulation-format independent and requires only one piece of hardware to operate across a wide radio-frequency bandwidth. By reducing self-interference to acceptably low powers, a cognitive radio can continuously sense its radio-frequency environment to detect the presence of a licensed user or scan for spectrum white spaces even while transmitting simultaneously.
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利用光自干扰抵消的认知无线电全双工频谱传感
为了实现认知无线电的全双工频谱感知,提出了一种光学自干扰抵消系统,并进行了实验验证。光学系统是一个模拟射频前端模块,可以消除带内自干扰,使无线电能够同时发送和接收信号。该系统实现了对窄带干扰的83 dB对消,对50 MHz调频信号的60 dB对消。光消器的中心频率可在无线电频谱范围内自由调节,仅受光电探测器和电光调制器带宽的限制为10 GHz。该系统与调制格式无关,只需要一块硬件就可以在宽的射频带宽上运行。通过将自我干扰降低到可接受的低功率,认知无线电可以持续感知其射频环境,以检测许可用户的存在或扫描频谱空白,即使在同时发射。
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