Multi-frequency point interference sampling circuit and method for ku/ka dual-band satellite communication ground station
A sampling circuit, multi-frequency technology, applied in the field of satellite communication anti-jamming, can solve the problems of unsuitable non-cooperative interference signal sampling, large insertion loss, etc., to achieve the effect of convenient control and testing
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Embodiment 1
[0044] see Figures 1 to 3 As shown, Embodiment 1 provides a multi-frequency point interference sampling circuit for Ku / Ka dual-band satellite communication ground stations, which includes several sampling frequency conversion units, reference generation units, switching matrix units and signal control units.
[0045] The sampling frequency conversion unit is composed of an interference sampling antenna and a down conversion module, including M Ka frequency band sampling frequency conversion units, N Ku frequency band sampling frequency conversion units, a satellite communication antenna Ka frequency band down conversion module and a satellite communication antenna Ku frequency band Down conversion module. The output end of the Ka-band sampling frequency conversion unit is electrically connected to the first group of input ends of the reference generation unit through a coaxial cable, and the output end of the Ku-band sampling frequency conversion unit is electrically connecte...
Embodiment 2
[0060] Due to the certain radiation power near the satellite antenna, it is not suitable for personnel to operate at close range for a long time. Existing interference sampling circuits have communication interfaces, but do not necessarily have the remote control functions of polarization selection, clock switching and link switching. The remote display and control unit is interconnected with the control terminal of the signal control unit, the sampling frequency conversion unit, the reference generation unit and the switching matrix unit through the communication terminal, which can realize the discrete single frequency of multi-channel Ku and Ka frequency bands. Point signal control, processing and status monitoring.
[0061] Therefore, see Figure 4 As shown, the difference between Embodiment 2 and Embodiment 1 is mainly that a remote display and control unit containing a remote system management microprocessor is added to the system to realize the multi-frequency point in...
Embodiment 3
[0067] Although, the use of a wide-beam sampling antenna can effectively guarantee the continuous collection of interference signals from all directions, and reasonable adjustment of antenna polarization according to business needs can support the sampling of interference signals in different polarization forms. However, in the swaying working environment, the satellite communication ground station usually uses a servo platform to ensure the stability of the antenna satellite locking state. The swaying of the sampling antenna beam with the swaying environment is not conducive to the sampling of interference signals. When considering the platform swaying problem, a servo platform can be set on the frequency conversion sampling unit.
[0068] Therefore, the difference between the third embodiment and the second embodiment is mainly that a servo platform is set on the sampling frequency conversion unit or the sampling antenna to obtain larger applicable scenarios.
[0069] Specifi...
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