Reconfigurable broadband high-frequency frequency hopping signal generation method
A frequency hopping signal and broadband technology, applied in the field of reconfigurable broadband high-frequency frequency hopping signal generation system, can solve the problems of frequency hopping series, frequency hopping speed limitation, performance limitation, insufficient stability, etc., and achieve center frequency increase, The effect of doubling the bandwidth
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specific Embodiment approach 1
[0032] The first embodiment is a reconfigurable broadband high-frequency frequency hopping signal generation method based on a dual-channel tunable optical carrier, such as figure 1 shown. It is mainly composed of a dual tunable optical carrier unit (DTOCU), an electrical signal generation unit EGU and a frequency hopping signal generation unit FHG. Among them, DTOCU generates dual-channel optical signals on demand; FHG is composed of electric phase shifter PS, 2×2 optical coupler OC1, optical combiner OC2, direct current source DC, parallel intensity modulators IM1 and IM2, and is used to generate multi-level jump frequency signal. Through the electric phase shifter with a phase shift of 90 degrees, the phases of the electrical signals loaded on IM1 and IM2 are quadrature, and through the 2×2 optical coupler OC1, the dual optical signals output by the DTOCU unit are simultaneously loaded on IM1 and IM2 , make IM1 and IM2 work at the minimum point through DC control, ensure ...
specific Embodiment approach 2
[0034] The second specific embodiment is the generation of high-frequency broadband multi-stage frequency hopping signals. The specific steps are:
[0035] Step 1: According to figure 1 , the DTOCU unit is composed of two light sources LD1 and LD2, the EGU unit is an electrical frequency hopping signal unit, and the output angular frequency of LD1 is ω 1 , the amplitude is E 0 One continuous optical carrier signal of , the output angular frequency of LD2 is ω 2 , the amplitude is E 0 Another continuous optical carrier signal of the EGU unit outputs an electrical frequency hopping signal.
[0036] Step 2: According to figure 1 , the continuous optical carrier signal output by LD1 in DTOCU is sent to an optical input port of OC1 in FHG unit, the continuous optical carrier signal output by LD2 in DTOCU is sent to another optical input port of OC1 in FHG unit, and the electrical frequency hopping signal output by EGU The signal is divided into two channels, one is sent to th...
specific Embodiment approach 3
[0058] The third embodiment is the generation of broadband multi-stage frequency hopping signals with wide spectrum coverage, such as figure 1 shown. The specific steps are:
[0059] Step 1: The DTOCU unit is composed of two-way 2FSK optical signals OFSK1 and OFSK2 that change with the binary code sequence. OFSK1 and OFSK2 are respectively controlled by the relevant binary sequence codes. The two code sequences can be completely the same or different. The signal output by the EGU unit is a microwave radio frequency signal, which may be a single frequency signal or a radio frequency signal with a certain bandwidth.
[0060] Step 2: According to figure 1, the 2FSK optical signal output by OFSK1 in the DTOCU is sent to an optical input port of OC1 in the FHG unit, the 2FSK optical signal output by OFSK2 in the DTOCU is sent to another optical input port of OC1 in the FHG unit, and the microwave radio frequency signal output by the EGU is divided into Two channels, one is sent ...
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