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35 results about "Kaiser window" patented technology

The Kaiser window, also known as the Kaiser–Bessel window, was developed by James Kaiser at Bell Laboratories. It is a one-parameter family of window functions used in finite impulse response filter design and spectral analysis. The Kaiser window approximates the DPSS window which maximizes the energy concentration in the main lobe but which is difficult to compute.

Method and device for detecting voltage fluctuation and flicker based on energy operator and spectrum correction

The invention discloses a method and device for detecting voltage fluctuation and flicker based on an energy operator and spectrum correction. The method comprises the steps of: extracting an envelope signal of a voltage flicker signal by utilizing a Teager-Kaiser energy operator, and speeding up an operational speed to overcome influences from change of parameters such as a signal frequency, a waveform, an amplitude value and a sampled data length during the extraction of the flicker envelope signal and realize rapid and real-time detection of the flicker signal; and performing improved FFT (Fast Fourier Transform) spectrum correction analysis on the voltage flicker signal by adopting a Kaiser window function with a freely selectable proportion of a width of a main lobe to a height of a side lobe, and exactly obtaining the frequency and the amplitude component of the voltage flicker signal when the frequency, the waveform and the amplitude value of the flicker signal are changed excessively. The device based on the method comprises a signal conditioning unit, a data processing unit and a data storage and display unit all of which are connected in order. The detecting method is convenient for rapid and in-time detection process of the signal; and the device has a simple structure and is easy to realize.
Owner:HUNAN UNIV

Harmonic analysis method based on Kaiser window double-spectral-line interpolation FFT

The invention discloses a harmonic analysis method based on the Kaiser window function double-spectral-line interpolation FFT. The method is suitable for analysis and monitoring on voltages, currents and harmonic waves of a power network. The method comprises the steps of firstly, using linear frequency modulation Z conversion for extracting fundamental wave signal parameters (amplitudes, frequencies and phase positions) from electric power signals containing the harmonic waves in a high-precision mode, then adding a Kaiser window function into the analyzed electric power signals to cut off the electric power signals, using the FFT for calculating frequency spectra of remaining signals, and precisely calculating parameters of the electric power harmonic waves according to interpolations of the Kaiser window function by the harmonic frequencies in a frequency domain. The method can effectively overcome fluctuations of fundamental frequencies, and influences of white noise on the harmonic analysis, under the non-integer cycle cut-off condition, the relative error of the frequency calculation of the 21-time harmonic signals is 1.4*10%, the relative error of the amplitude calculation is smaller than or equal to 0.002%, and the relative error of the initial phase position calculation is smaller than or equal to 0.0001%.
Owner:西安钧能科技有限公司

Method and device for configuring boundary frequency band of efficient filter rapidly

InactiveCN104283527APrecisely control the boundary frequency positionAccurately getDigital technique networkComputer scienceTransmission curve
The invention discloses a method and device for configuring the boundary frequency band of an efficient filter rapidly. The method for configuring the boundary frequency band of the efficient filter rapidly comprises the steps that relevant pass band parameters of the filter and the translation parameters are obtained according to the pass band cut-off frequency of the filter and the order of the filter, and the filter coefficient with the length being 2N-1 existing before compensation is obtained according to the relevant pass band parameters of the filter and the translation parameters; a filter coefficient is obtained according to the filter coefficient existing before compensation, the Kaiser window parameter and a compensating filter coefficient analytic expression; the filter coefficient existing before compensation and a compensating filter coefficient are added, so that the final filter coefficient is obtained. The device for configuring the boundary frequency band of the efficient filter rapidly comprises an external RAM, a DSP, an output driver and a display circuit. According to the method and device for configuring the boundary frequency band of the efficient filter rapidly, parameters required for compensating the filter are calculated according to the filter coefficient existing before compensation and a transmission curve and are fed back to be stored in the external RAM, and all the parameters required for designing the filter are input into the DSP through the external RAM, so that the required filter coefficient and the transmission curve are obtained and are displayed through the output driver and the display circuit.
Owner:TIANJIN UNIV

Electric energy metering method based on Kaiser window FFT four-peak interpolation

InactiveCN106814230AGood main and side lobe performanceExcellent main and side lobe performanceTime integral measurementFrequency spectrumHarmonic
The invention discloses an electric energy metering method based on Kaiser window FFT four-peak interpolation. The electric energy metering method comprises steps that based on a Kaiser window FFT four-peak interpolation modification formula, FFT frequency shift, and frequency spectrum of a window function Kaiser, amplitudes of symmetrical spectral lines on left sides and right sides of fundamental wave, harmonic wave, and interharmonic wave peak value frequency points are acquired, and by using a polynomial fitting formula, the general amplitude, phase, and frequency interpolation modification formula of the signal fundamental waves, the harmonic waves, and the interharmonic waves is acquired; according to the general amplitude, phase, and frequency interpolation modification formula, the amplitude parameters, the phase parameters, and the frequency parameters of the fundamental waves, the harmonic waves, and the interharmonic waves of measured voltage signals and measured current signals are calculated; fundamental wave electric energy, harmonic wave electric energy, interharmonic wave electric energy, and total electric energy are calculated. The electric energy metering method is advantageous in that according to a four-peak interpolation modulation algorithm, by fully using the symmetrical performance of the left and right four spectral lines of the amplitude frequency points and the main lobe performance and the side lobe performance of the Kaiser window function, high calculation accuracy is provided.
Owner:GUIYANG POWER SUPPLY BUREAU OF GUIZHOU POWER GRID CO LTD +1

Measurement method for subsynchronous and supersynchronous phasors of power system voltage harmonic wave

A measurement method for subsynchronous and supersynchronous phasors of a power system voltage harmonic wave comprises the following steps of (1) collecting power grid voltage signals and performing data preprocessing, and performing time domain Kaiser window processing on the obtained voltage sampling data; (2) sequentially performing local discrete Fourier transform in frequency bands on the windowed data, and calculating spectral line amplitude values in each frequency band; (3) counting and arranging the spectral line amplitude values in each frequency band except a fundamental frequency to obtain a spectral line having a specific amplitude value; (4) performing double-spectral-line interpolation calculation between the two adjacent maximum amplitude values for the obtained spectral line amplitude values to obtain a frequency correction coefficient, thereby determining frequencies of sub-synchronous and super-synchronous components; and (5) calculating by using the frequency correction coefficient to solve a corrected formula of the amplitude values and phases, and obtaining the amplitude values and phases of the subsynchronous and supersynchronous components. According to themeasurement method for the subsynchronous and supersynchronous phasors of the power system voltage harmonic wave, Kaiser window function processing is performed on the sampled data in equal intervalfrequency bands, and the obtained specific spectral lines are subjected to correction processing to obtain the subsynchronous and supersynchronous frequencies, amplitude values and phases.
Owner:CHINA SOUTHERN POWER GRID COMPANY

Flexibly-configured low cost fiber disturbance event end point detection method and flexibly-configured low cost fiber disturbance event end point detector

ActiveCN105549107ALow costMeet the needs of various environmental backgroundsOptical detectionFiberFrequency vector
The invention discloses a flexibly-configured low cost fiber disturbance event end point detection method and a flexibly-configured low cost fiber disturbance event end point detector. The method comprises steps that a frequency shift filter coefficient is acquired through stop band width, frequency translation amount and filter frequency vector length, Fourier transform for the frequency shift filter coefficient is carried out, a compensation filter coefficient is further acquired through a Kaiser window and a rectangular window; a frequency shift compensation low pass filter coefficient is acquired through the frequency shift filter coefficient and the compensation filter coefficient; the frequency shift compensation low pass filter coefficient is processed, and a high pass filter is acquired; a signal after downsampling is inputted to the high pass filter, and a filtering output sequence is acquired; the first position of the filtering output sequence having an energy value greater than the energy threshold is searched, and the position is the disturbance start point. The detector comprises an analog-digital converter, an FFT analyzer and a DSP device. Through the method and the device, parameter adjustment can be realized, various environment background demands can be satisfied, and quite high timeliness and relatively low cost are realized.
Owner:TIANJIN UNIV

Timing tracking method and apparatus used in DMR system

The invention discloses a timing tracking method and apparatus used in a DMR (Digital Mobile Radio) system and is directed to the field of wireless communication technology. The timing tracking apparatus comprises a base-band orthogonal signal difference extractor, a timing deviation extractor, a weight average arithmetic unit and an interpolation corrector. The base-band orthogonal signal difference extractor carries out a digit down conversion processing towards DMR physical layer modulation signals to obtain base-band orthogonal signals I (k) and Q (k). A difference operation and an arc tangent operation are carried out towards the base-band orthogonal signals I (k) and Q (k) to obtain a difference [fai] (k). The timing deviation extractor extracts a timing discrepancy based on [fai] (k) signal characteristics to obtain the timing discrepancy value e (k) of the present signal. The weight average arithmetic unit utilizes a weight value [omega] to carry out a weight average operation towards the extracted timing discrepancy value e (k) and outputs an average value f (k). The interpolation corrector utilizes Kaiser Window and the average value f (k) to carry out an interpolation correction towards the different [fai] (k) to obtain a correction value y (k). According to the timing tracking method and apparatus in the invention, the timing deviation can be accurately estimated and compensated. The invention is suited for the 4CPFSK signal demodulation in the DMR system.
Owner:ZHEJIANG UNIV +1

Image fusion method based on Kaiser window FFT four-peak interpolation modification

InactiveCN107945147AGood main and side lobe performanceExcellent main and side lobe performanceImage enhancementImage analysisFrequency spectrumHarmonic
The invention discloses an image fusion method based on Kaiser window FFT four-peak interpolation modification. The method comprises the steps that based on a Kaiser window FFT four-peak interpolationmodification formula, FFT frequency shift and amplitude values of the frequency spectrum of a window function Kaiser at four symmetrical spectral lines at the left side and right of fundamental wave,harmonic wave and inter-harmonic wave peak value frequency points, a general amplitude, phase and frequency interpolation modification formula of the signal fundamental waves, the harmonic waves andthe inter-harmonic waves is acquired by using a polynomial fitting formula; amplitude parameters, phase parameters and frequency parameters of the fundamental waves, the harmonic waves and the inter-harmonic waves of measured image signals are calculated according to the general amplitude, phase and frequency interpolation modification formula; and thus the fundamental waves, the harmonic waves and the inter-harmonic waves are calculated. The image fusion method utilizes a four-peak interpolation modification algorithm, makes full use of the symmetrical performance of the four spectral lines at the left and right of the amplitude frequency points and excellent main lobe and sidelobe performance of the Kaiser window function and has high calculation accuracy.
Owner:YUNNAN POWER GRID CO LTD PUER POWER SUPPLY BUREAU

Transformer calibrator verification method and system based on Kaiser window FFT filtering

The invention provides a transformer calibrator verification method and a transformer calibrator verification system based on Kaiser window FFT filtering. The transformer calibrator verification method and the transformer calibrator verification system adopt automatic verification software of an upper computer and mainly achieve the functions of automatically verifying a transformer calibrator according to national metrological verification regulations, automatically recording test data, being capable of printing all records and a verification certificate required by the regulations, calculating a ratio difference value and an angular difference value according to a set measuring point output signal, and comparing calculation results, thereby ensuring the verification precision and verification efficiency; a Kaiser window FFT filtering algorithm is adopted for extracting fundamental waves, a main influencing factor for extracting differential value signal fundamental wave components ischannel leakage caused by frequency fluctuations, and leakage is reduced by increasing data sampling points, namely, reducing the width of a main lobe of a rectangular window; and since the filteringalgorithm based on fundamental wave has good adaptability to frequency fluctuations, real-time tracking of frequency can be realized, and the precision of fundamental wave extraction can be greatly improved.
Owner:YUNNAN POWER GRID CO LTD ELECTRIC POWER RES INST

Scanning nondestructive testing system and method based on weak magnetic sensor

The invention provides a scanning nondestructive testing system and method based on a weak magnetic sensor and belongs to the field of nondestructive testing. The method comprises the following steps:carrying out excitation on a test system by utilizing a magnetic field with a fixed frequency of 4Hz; controlling two sliding blocks to move on synchronous guide rails by utilizing two stepper motorsto form a transmission apparatus, so that the weak magnetic sensor fixed on the sliding block is allowed to scan the entire sample surface; collecting measurement data and position information of theweak magnetic sensor in real time by utilizing a data acquisition module; and carrying out band-pass filtering and pseudo image processing on the data collected by the data acquisition module by utilizing a data processing and pseudo-imaging system, thereby realizing detection and location of internal defects of material. The method can detect the internal defects of the composite material; and due to existence of excitation of an external stable magnetic field and band-pass filtering realized by utilizing a Kaiser window during data processing, the method can be used when the experimental environment has great interference.
Owner:HARBIN INST OF TECH

Extraction Method of Time-Frequency Parameters of Power Quality Disturbance Signal Based on Fast k-s Transform

The invention discloses a method for extracting time-frequency parameters of power quality disturbance signals on the basis of fast K-S (Kaiser-S) transformation. The method includes steps of (1), sampling the tested samples; (2), performing the fast K-S transformation on the tested signals; (3), repeating executing the step (2) until amplitudes, phases and start-stop and sudden-change moments of all the disturbance signals are analyzed, and extracting the time-frequency parameters of the power quality disturbance signals. Compared with the prior art, the method has the advantages that Kaiser windows replace Gauss windows for traditional S transformation, widths and heights of Kaiser window functions can be adaptively adjusted along with change of frequencies, and the energy accumulation and frequency adaptive adjustment capacity of time-frequency analysis of the traditional S transformation can be improved; the computational complexity can be reduced by means of judging characteristic frequencies; the method is wide in application range, and the fast K-S transformation and the method for extracting the time-frequency parameters of the power quality disturbance signals have a wide application prospect in fields of vibration signal analysis, fault diagnosis, pattern recognition, noise measurement and biomedical examination.
Owner:HUNAN UNIV

Dynamic phasor estimation method and system based on Kaiser window

PendingCN112433093AImproving Phasor Estimation AccuracyHigh Dynamic Estimation AccuracySpectral/fourier analysisComplex mathematical operationsSide lobeLeast squares
The invention discloses a dynamic phasor estimation method and system based on Kaiser windows. The method comprises the following steps: firstly, building a phasor estimation model of a power oscillation signal, obtaining the amplitude-frequency response of the oscillation signal under different side lobe attenuation conditions through adjusting a Bessel parameter beta of the Kaiser windows, and building a Taylor derivative estimation equation set based on a plurality of Kaiser windows in order to improve phasor estimation precision under power oscillation; and secondly, solving a Taylor derivative to be solved in an equation set by using a least square estimation method to obtain a fundamental component of the electric power oscillation fundamental frequency signal. In practical application, phase shift operation is adopted to correct deviation between reference time and report time of a satellite time service system, and a final accurate result of phasor estimation is output. Accurate phasor measurement under the power oscillation condition is achieved, and the test results of standard dynamic modulation and RTDS signal generation show that when power oscillation happens to a power system, the method has high dynamic estimation precision and meets various indexes of the measurement standard.
Owner:STATE GRID SICHUAN ELECTRIC POWER CORP ELECTRIC POWER RES INST
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