US2022109599A1PendingUtilityA1

Method of signal generation and signal generating device

Assignee: SUN PATENT TRUSTPriority: Feb 18, 2011Filed: Dec 15, 2021Published: Apr 7, 2022
Est. expiryFeb 18, 2031(~4.6 yrs left)· nominal 20-yr term from priority
H04B 7/0697H04B 7/0667H04L 27/26524H04L 27/2634H04L 27/36H04L 27/206H04B 7/0404H04L 5/12H04L 5/0082H04L 1/0048H04L 27/20H04B 7/0842H04L 5/0023H04L 27/368H04B 7/0682H04L 1/0071H04L 27/2628H04L 27/265
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Claims

Abstract

A transmission method simultaneously transmitting a first modulated signal and a second modulated signal at a common frequency performs precoding on both signals using a fixed precoding matrix and regularly changes the phase of at least one of the signals, thereby improving received data signal quality for a reception device.

Claims

exact text as granted — not AI-modified
1 - 2 . (canceled) 
     
     
         3 . A signal generation method comprising:
 generating baseband signals by a defined modulation scheme;   phase-changing the baseband signals with respective phase changing patterns to generate respective phase-changed signals, each of the phase changing patterns being different from each other; and   inverse-fast-Fourier-transforming the phase-changed signals to respective orthogonal frequency division multiplexing (OFDM) transmission signals, wherein   each phase changing pattern has N candidates for an amount of change in a phase, N being an integer greater than two, and   each candidate is periodically selected from the N candidates based on subcarriers of the respective OFDM transmission signals, a phase of a corresponding baseband signal among the baseband signals being changed by the each candidate.   
     
     
         4 . A signal generation apparatus comprising:
 a coding circuit configured to generate baseband signals by a defined modulation scheme;   a phase change circuit configured to phase-change the baseband signals with respective phase changing patterns to generate respective phase-changed signals, each of the phase changing patterns being different from each other; and   an inverse fast Fourier transform circuit configured to inverse-fast-Fourier-transform the phase-changed signals to respective orthogonal frequency division multiplexing (OFDM) transmission signals, wherein   each phase changing pattern has N candidates for an amount of change in a phase, N being an integer greater than two, and   each candidate is periodically selected from the N candidates based on subcarriers of the respective OFDM transmission signals, a phase of a corresponding baseband signal among the baseband signals being changed by the each candidate.   
     
     
         5 . A signal processing apparatus comprising:
 a fast Fourier transform circuit configured to fast-Fourier-transform received signals, the signals having been generated by a signal generation method and transmitted,   the signal generation method comprising:   generating baseband signals by a defined modulation scheme;   phase-changing the baseband signals with respective phase changing patterns to generate respective phase-changed signals, each of the phase changing patterns being different from each other; and   inverse-fast-Fourier-transforming the phase-changed signals to respective orthogonal frequency division multiplexing (OFDM) transmission signals, wherein   each phase changing pattern has N candidates for an amount of change in a phase, N being an integer greater than two, and   each candidate is periodically selected from the N candidates based on subcarriers of the respective OFDM transmission signals, a phase of a corresponding baseband signal among the baseband signals being changed by the each candidate; and   a demodulating circuit configured to demodulate the signal after the fast Fourier transform based on the phase changing patterns and the modulation scheme.

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