首页> 外国专利> Method and apparatus for encoding symbols carrying payload data for watermarking therewith an audio or video signal, as well as for decoding symbols carrying payload data of the audio or video signal watermarked method and apparatus for

Method and apparatus for encoding symbols carrying payload data for watermarking therewith an audio or video signal, as well as for decoding symbols carrying payload data of the audio or video signal watermarked method and apparatus for

机译:用于对携带有效载荷数据的符号进行编码的方法和装置,用于对带有音频或视频信号加水印的有效载荷数据的符号进行解码,并且

摘要

Watermark information (denoted WM) consists of several symbols which are embedded continuously in an audio or a video signal. At decoder site the WM is regained using correlation of the received signal with an m-sequence if Spread Spectrum is used. In some watermark technology the watermark information is transmitted asynchronously, i.e. it is continuously tested whether or not WM can be embedded imperceptible within the audio or video signals. Only if this is true a WM frame is transmitted. But a WM frame consists of some tens of symbols, each carrying one or more bits which are transmitted synchronously. That means, if the period in which the WM can be embedded is shorter than the frame length, some symbols cannot be recovered at receiver side. According to the invention, each WM symbol carries an ID item in addition to its normal payload, and it is already tested in the encoder whether or not the signal is good enough so that the embedded symbol can be recovered at decoder side. If true, it is embedded. If not true, no WM is embedded for the length of one symbol and the test is repeated for the following symbol. The sequence of IDs is known at the encoder which can therefore detect using the ID whether or not a symbol has been skipped.
机译:水印信息(表示为WM)由几个符号组成,这些符号连续嵌入音频或视频信号中。在解码器站点,如果使用扩频,则使用接收信号与m序列的相关性重新获得WM。在某些水印技术中,水印信息是异步传输的,即不断地测试是否可以将WM嵌入到音频或视频信号中。仅当这是真的时,才传输WM帧。但是WM帧由几十个符号组成,每个符号都包含一个或多个同步传输的比特。这意味着,如果可嵌入WM的时间段短于帧长,则某些符号将无法在接收方恢复。根据本发明,每个WM符号除了其正常有效载荷外还携带一个ID项,并且已经在编码器中测试了信号是否足够好,使得可以在解码器侧恢复嵌入的符号。如果为true,则将其嵌入。如果不正确,则不会在一个符号的长度内嵌入WM,并针对下一个符号重复测试。 ID的序列在编码器处是已知的,因此可以使用ID来检测符号是否已被跳过。

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