A terahertz synchronous receiving and transmitting full-duplex communication system
A communication system, terahertz technology, applied in the field of terahertz communication, can solve the problems of large front-end of the system, unfavorable system integration, etc., and achieve the effect of reducing the volume
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Embodiment 1
[0028] This embodiment proposes a terahertz full-duplex communication system for simultaneous transmission and reception. The system can simultaneously realize the dual functions of transmitting and receiving signals. The system includes a terahertz antenna, a terahertz radio frequency front end, an intermediate frequency circuit and a baseband circuit; the terahertz The RF front-end includes a terahertz bandpass filter, a terahertz quadrature-mode coupler, a terahertz subharmonic mixer, and a terahertz frequency multiplication link, and terahertz is realized in the same radio-frequency front-end through a terahertz quadrature-mode coupler The transmission and reception of signals, such as figure 1 shown.
[0029] In this embodiment, the terahertz radio frequency front-end part includes a terahertz bandpass filter, a terahertz orthogonal mode coupler (OMT), a first terahertz subharmonic mixer, a second terahertz subharmonic mixer frequency converter and terahertz frequency mu...
Embodiment 2
[0039] Based on the communication system of the above-mentioned embodiment 1, the terahertz orthogonal mode coupler (OMT) is further designed in this implementation, such as figure 2 As shown, the terahertz quadrature-mode coupler of this embodiment includes an input part (port 1), two output parts (port 2 and port 3), and a quadrature separation part (including a polarization separation structure and a transition structure). Two orthogonally polarized mode waves (horizontal polarization and vertical polarization) from port 1 pass through the polarization separation structure and transition structure, output vertically polarized waves from port 2, and output horizontally polarized waves from port 3, such as image 3 shown. Of course, reverse use is also possible, port 2 and port 3 are independent of each other. Port 1 is a square waveguide port with a size of 1.092mm×1.092mm; ports 2 and 3 are standard rectangular waveguide ports WR-4 with a size of 1.092mm×0.546mm.
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