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A Compression Method of Internal Data of Frequency Converter

A technology of internal data and compression methods, applied in electrical components, code conversion, etc., can solve problems such as inconvenient operation, inability to achieve comprehensive data acquisition, and inability to measure data accurately and in real time.

Active Publication Date: 2015-09-30
天津瑞源电气有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At present, wind turbines must have the function of low voltage ride through, and many data cannot be measured accurately and in real time during the process of low voltage ride through, which brings a lot of inconvenience to the later optimization
At present, the data acquisition in the low voltage ride-through stage is basically realized by artificially adding test instruments at the relevant measurement points. In actual measurement, only some data can be collected in a targeted manner, and the comprehensive data collection cannot be realized, and the operation is inconvenient.

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  • A Compression Method of Internal Data of Frequency Converter
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  • A Compression Method of Internal Data of Frequency Converter

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Embodiment Construction

[0015] The present invention provides a method for compressing internal data of a frequency converter, which includes the following steps:

[0016] (1) Collect the internal data of the frequency converter, and the internal data collected during the normal operation of the frequency converter are normal data;

[0017] (2) For the high eight-bit data of the data collected in step (1), the run-length coding method is used to separately encode and compress the data of each channel. By optimizing the run-length coding method, each character can be up to Represents 30 data;

[0018] The run length encoding method is specifically:

[0019] When the inverter works normally, the grid voltage, grid-side current and rotor-side current data are all less than 1023, that is, the upper eight bits of normal data are 0x00, 0x01, 0x02, 0x03, 0xff, 0xfe, 0xfd and 0xfc. The above-mentioned waveforms are all sine waves, so all the data basically appear continuously, that is, the order of the high eight b...

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Abstract

The invention provides a compression method for interior data of a frequency changer. The compression method for the interior data of the frequency changer comprises the following steps of (1) collecting the interior data of the frequency changer; (2) for high eight data in the collected interior data, a run coding manner being adopted to conduct independent coding and compression for data in all channels, enabling each character to show 30 data by optimizing of the run coding manner at highest, for the low eight data of the collected interior data in the step one, adopting a Golomb coding manner, short code characters being used to show the low eight data which appear at a high frequency, long code characters being used to show the low eight data which appear in a low frequency, conducting statistics for the size of a compressed data package of all low eight data which is collected in the step (1), comparing the size of the data package of the whole size of all low eight data before compressed, obtaining comparing results, and conducting compression motion according to the comparing result. The compression method for the interior data of the frequency changer can achieve real-time, high-efficiency, accurate, and free of damage automatic compression for the interior data of the frequency changer.

Description

Technical field [0001] The invention belongs to the technical field of data compression, and particularly relates to a method for compressing internal data of a frequency converter. Background technique [0002] Currently commonly used data compression algorithms are mainly divided into two categories: one is lossless compression algorithm, and the other is lossy compression algorithm. Among them, lossy compression algorithms are mainly used for multimedia information such as images, animations, and audios, and lossless compression algorithms are often used for files such as data and waveforms. Common lossless compression algorithms mainly include several basic algorithms such as LZSS / LZW / LZ78 / LZ77. The encoding methods of the two algorithms of LZ78 / LZW are more complicated and difficult to implement, and are not suitable for real-time processing in industrial control. The compression rate of LZ77 is relatively low, which cannot meet the requirements of the current inverter (the...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H03M7/30
Inventor 赵耀周玲玲谷兴华
Owner 天津瑞源电气有限公司
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