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  1. Abstract: The first 120Gbaud-based C-band self-homodyne 800Gb/s coherent links using lowlatency FEC are experimentally demonstrated. A minimum coherent DSP is proposed to compensate fiber dispersion, phase mismatch between signal and local oscillator, and transceiver I-Q impairments. © 2022 The Author(s) 
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  2. Abstract: The first 120Gbaud-based C-band self-homodyne 800Gb/s coherent links using low-latency FEC are experimentally demonstrated. A minimum coherent DSP is proposed to compensate fiber dispersion, phase mismatch between signal and local oscillator, and transceiver I-Q impairments. 
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  3. Abstract: The first 120Gbaud-based C-band self-homodyne 800Gb/s coherent links using low-latency FEC are experimentally demonstrated. A minimum coherent DSP is proposed to compensate fiber dispersion, phase mismatch between signal and local oscillator, and transceiver I-Q impairments. 
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  4. Pilot-aided channel estimation allows the receiver to acquire channel state information (CSI) for each multicarrier block by multiplexing data and pilot symbols in the same block, as long as they can be decoupled. This work proposes several frequency-domain pilot multiplexing techniques to enable independent channel estimation and detection at the receiver for orthogonal chirp division multiplexing (OCDM) transmissions in frequency-selective channels. Analysis shows that each of the proposed schemes is able to achieve the mean squared error (MSE) lower bound for channel estimation and has greater spectral efficiency than the existing schemes for OCDM and chirp spread orthogonal frequency division multiplexing (OFDM). 
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  5. Multiple data streams sharing the same time-frequency resource block through digital beamforming technique are received at different angles of arrival by a 1-by-4 antenna array and decoded simultaneously in 5G fiber-wireless integrated access network. 
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  7. Abstract: Multiple data streams sharing the same time-frequency resource block through digital beamforming technique are received at different angles of arrival by a 1-by-4 antenna array and decoded simultaneously in 5G fiber-wireless integrated access network. © 2021 The Author(s) 
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