• Laser & Optoelectronics Progress
  • Vol. 59, Issue 19, 1906004 (2022)
Yuhua Xing and Qinlin Duan*
Author Affiliations
  • School of Automation and Information Engineering, Xi'an University of Technology, Xi'an 710048, Shaanxi, China
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    DOI: 10.3788/LOP202259.1906004 Cite this Article Set citation alerts
    Yuhua Xing, Qinlin Duan. Generation Technology of High-Frequency and Large Time Bandwidth Product Linear Frequency Modulation Signal[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1906004 Copy Citation Text show less

    Abstract

    In order to meet the application requirements of modern radar systems for linear frequency modulation (LFM) signals with high frequency and large time bandwidth product, a frequency 16-tupling LFM signal generation scheme using a cascaded double parallel Mach-Zehnder modulator and a cyclic secondary phase modulation loop structure is proposed. After theoretical analysis and simulation, it is verified that a LFM signal with a center frequency of 160 GHz, a bandwidth of 32 GHz, and a time bandwidth product (TBWP) of 310.3 can be generated when the radio frequency drive signal frequency is 10 GHz. In order to further improve the time bandwidth product of the generated signal, on the one hand, the parabolic drive signal is stretched or phase coded in the time domain to increase the time bandwidth of the generated signal. On the other hand, the parabolic drive signal is divided into multiple segments to increase the bandwidth of the generated signal. The results show that after the above processing, LFM signals with TBWP of 1272.05, 966.04, and 15346.75 can be generated, and the results are in good agreement with the theoretical analysis.
    Eint=E0expjωct
    Edp1-outt=14E0expjωctexpjmsinωRFt+exp-jmsinωRFt+expjmsinωRFt+Δθ1+exp-jmsinωRFt+Δθ1
    Edp1-outt=14E0n=-1+expjnΔθ1[1+(-1)n]Jnmexpjωct+nωRFt
    Edp1-outt=12E0·J0(m)+J4(m)exp[j(ωct+4ωRFt)]+exp[(j(ωct-4ωRFt)]+J8(m)exp[j(ωct+8ωRFt)]+exp[(j(ωct-8ωRFt)]
    Edp2-outt=14Edp1-outtexpjmsinωRFt+π4+exp-jmsinωRFt+π4+expjmsinωRFt+π2+π4+exp-jm1sinωRFt+π2+π4
    Edp2-outt18E0expjωct·J02m-2J42m+2J82m+2J0mJ4mcos4ωRFt+2J0mJ4mcos4ωRFt+π+2J4mJ8mcos4ωRFt+π+2J4mJ8mcos4ωRFt+2π+2J42mcos8ωRFt+π+2J0mJ8mcos8ωRFt+2J0mJ8mcos8ωRFt+2π+2J4mJ8mcos12ωRFt+π+2J4mJ8mcos12ωRFt+2π+2J82mcos16ωRFt+2π
    J02m-2J42m+2J82m=0
    Edp2-outtE0J42m+2J0mJ8mexpjωc-8ωRFt+expjωc+8ωRFt
    E1tE2t=expjωct+j8ωRFt+jnmstexpjωct-j8ωRFt-jnmst
    iouttRexpj16ωRFt+j2nmst
    st=kt-Tc/22,      0tTc0,                              else
    ioutt=Rexpj16ωRFt+j2nmkt-Tc/22t0,  Tc
    f=12π16ωRF+4nmkt-Tc/2t0,  Tc
    QTBWP1=8nm/π
    s2t=kt-KTc/22,  0tKTc 0,                             else       
    QTBWP2=8nm/π=QTBWP1
    ub(t)=i=0M-1ciδ(t-iTc)   ,  0t<MTc
    s3(t)=s1(t)*ub(t)
    QTBWP3=8nmM/π=MQTBWP1
    s4t=N2kt-Tc / 22+C1,     0t<t1kt-Tc / 22+C2,     t1t<t2kt-Tc / 22+C3,     t2t<t3                                 kt-Tc / 22+CN,     tN-1t<Tc
    QTBWP4=4nmN/π=N2QTBWP1
    s4t=N2kt-Tc / 22+C1,   0t<t1kt-Tc / 22+C2,   t1t<t2kt-Tc / 22+C3,   t2t<t3                                 kt-Tc / 22+CN,   tN-1t<Tc
    s5(t)=s4(t)*ub(t)
    QTBWP4=4nmNM/π=NM2QTBWP1
    Yuhua Xing, Qinlin Duan. Generation Technology of High-Frequency and Large Time Bandwidth Product Linear Frequency Modulation Signal[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1906004
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