On-line inter-harmonic wave monitoring method and device
A monitoring device and harmonic technology, applied in the field of power system, can solve the problems of low frequency resolution, inability to monitor online, and inaccurate monitoring results.
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Embodiment 1
[0093] Embodiment 1 of the present invention provides an interharmonic online monitoring method, the specific flow chart is as follows figure 1 As shown, the specific process is as follows:
[0094] S101: Perform interpolation processing on the acquired three-phase voltage signal;
[0095] S102: Calculate the amplitude of the interpolated voltage in each frequency band;
[0096] S103: Monitor inter-harmonics based on the amplitude.
[0097] In the above S101, the acquisition process of the three-phase voltage signal is as follows:
[0098] The three-phase voltage signal and three-phase current signal can be obtained directly by point-by-point sampling and batch reading, or can be obtained from the sampled message by first buffering and then parsing the message. Among them, point-by-point sampling and batch reading are aimed at analog quantity sampling. The sampling frequency band of the corresponding device of the present invention can reach up to 512 points / cycle (25.6kHz)...
Embodiment 2
[0132] Based on the same inventive concept, Embodiment 2 of the present invention also provides an interharmonic online monitoring device, including an interpolation module, a calculation module, and a monitoring module. The functions of the above modules are described in detail below:
[0133] The interpolation module is used to perform interpolation processing on the obtained three-phase voltage signal and three-phase current signal respectively;
[0134] The calculation module is used to calculate the amplitude of the interpolated voltage and current in each frequency band;
[0135] The monitoring module therein is used to monitor the inter-harmonic based on the amplitude.
[0136] The above-mentioned interpolation module includes an acquisition unit, which acquires three-phase voltage signals and three-phase current signals according to the following process:
[0137] Obtain directly by point-by-point sampling and batch reading, or obtain from sampled packets by buffering...
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