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    个体化经颅直流电刺激的脑响应方法、装置、设备和介质

    1847322102A
    发明人
    汪胜佩, 何晖光, 邱爽
    受让人
    INST AUTOMATION CAS
    申请人
    Oura Health Oy
    申请号
    18017381
    申请日
    1985-01-15
    公开(公告)号
    1847322102A
    公开(公告)日
    2013-10-14
    IPC分类号
    H04L012/56H04Q011/04H04Q003/00H04L012/48H04L012/28H04L012/14H04L029/10H04Q003/52
    CPC分类号
    -
    优先权号
    060377
    3079966
    80072219
    716284
    优先权日
    2017-11-05
    2020-04-21
    2020-05-05
    2020-06-04
    摘要

    The disclosure discloses a method and device for monitoring partial discharge. The monitoring method including: step a, connecting a monitoring circuit in parallel to both ends of a tested product, disposing a ground wire between the monitoring circuit and ground, disposing a first sensor in the monitoring circuit, and disposing a ground wire sensor on the ground wire; step b, applying an excitation signal to the tested product, acquiring a first signal through the first sensor and acquiring a ground wire signal through the ground wire sensor within a monitoring cycle; and step c, determining whether the tested product has partial discharge through the first signal and the ground wire signal. The disclosure can avoid the partial discharge monitoring device from wrongly determining an interference signal to be a partial discharge signal, enhance anti-interference capability of the partial discharge monitoring device, and improve monitoring accuracy.

    权利要求
    1. An apparatus for controlling a switched-mode power supply converting a source voltage into a supply output voltage, wherein said supply output voltage is indicative of a reference voltage, and wherein said power supply comprises a switch providing a switching voltage and controlled by a control signal, the apparatus comprising: a) an integrator characterized by an integration time constant and operable to receive an integrator input signal and to produce an integrator output signal, wherein said integrator output signal is proportional to an antiderivative of said integrator input signal; and b) a Schmitt trigger characterized by a hysteresis gap and operable to receive a Schmitt trigger input signal and to output said control signal; wherein said integrator input signal comprises a first integrator input component proportional to said switched voltage and a second integrator input component proportional to said reference voltage, and wherein said Schmitt trigger input signal comprises a first Schmitt trigger input component proportional to said integrator output signal; wherein said Schmitt trigger input signal comprises a second Schmitt trigger input component proportional to said supply output voltage and a third Schmitt trigger input component proportional to a frequency control signal, wherein said switching voltage is characterized by a switching frequency, and wherein said switching frequency is indicative of a frequency of said frequency control signal.
    2. The apparatus of claim 1 wherein said frequency control signal is a periodic signal characterized by a time period, and wherein said time period is inversely proportional to said switching frequency.
    3. The apparatus of claim 1 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    4. The apparatus of claim 3 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    5. The apparatus of claim 1 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    6. The apparatus of claim 5 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    7. The apparatus of claim 1 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    8. The apparatus of claim 7 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    9. The apparatus of claim 2 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    10. The apparatus of claim 9 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    11. The apparatus of claim 1 wherein said frequency control signal is selected from the group comprising: a random signal, a periodic signal, and any combinations thereof.
    12. The apparatus of claim 1 wherein said switch is selected from the group consisting of a synchronous switch and an asynchronous switch.
    13. The apparatus of claim 12 wherein said Schmitt trigger input signal further comprises a second Schmitt trigger input component proportional to said supply output voltage.
    14. The apparatus of claim 13 wherein said Schmitt trigger input signal further comprises a third Schmitt trigger input component proportional to a frequency control signal, wherein said switching voltage is characterized by a switching frequency, and wherein said switching frequency is indicative of a frequency of said frequency control signal.
    15. The apparatus of claim 14 wherein said frequency control signal is a periodic signal characterized by a time period, and wherein said time period is inversely proportional to said switching frequency.
    16. The apparatus of claim 12 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    17. The apparatus of claim 16 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    18. The apparatus of claim 13 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    19. The apparatus of claim 18 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    20. The apparatus of claim 14 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    21. The apparatus of claim 20 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    22. The apparatus of claim 15 wherein said integrator input signal further comprises a third integrator input component proportional to said supply output voltage.
    23. The apparatus of claim 22 wherein said integrator input signal further comprises a fourth integrator input component proportional to said source voltage.
    24. The apparatus of claim 14 wherein said frequency control signal is selected from the group comprising: a random signal, a periodic signal, and any combinations thereof.
    说明书
    [0001]FIG. 1 is a perspective view of a stand with speaker for television receiver showing our new design; FIG. 2 is a front view thereof where the rear view is a mirror image; FIG. 3 is a left side view thereof; FIG. 4 is a right side view thereof; FIG. 5 is a top plan view thereof; FIG. 6 is a bottom plan view thereof; and, FIG. 7 is a rear perspective view thereof showing the state that the stand with speaker for television receiver is combined with each side of the television. The broken lines are for illustrative purposes only and form no part of the claimed design.
    同族专利
    暂无同族专利