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    • 4. 发明申请
    • DATA TRANSMISSION METHOD AND DEVICE FOR CARRYING OUT THE METHOD
    • 数据传输方法及其实现方法
    • WO2008003588A1
    • 2008-01-10
    • PCT/EP2007/056098
    • 2007-06-19
    • THOMSON LICENSINGGRIES, UlrichSCHREIBER, UlrichSTEINBORN, Peter
    • GRIES, UlrichSCHREIBER, UlrichSTEINBORN, Peter
    • H04J3/06
    • H04J3/0605
    • The invention relates to the technical field of data transmission via a transmission link (60) according to the TDM method, corresponding to time division multiplex. Such a method is used in an audio mixing console in order to transport the sample words of a plurality of audio channels jointly to an audio DSP processor (10) and, after processing, to transmit them back from said processor to an output processor (20). Since the data output process is performed in an automated manner with the aid of a DMA unit (11), severe interfering noise can occur in cases of error, said noise also being output via the loudspeakers. The invention is based on the aim of avoiding such interfering effects. An error detection method based on the marking of data frames is used for this. For this purpose, a number of marking bits (M1, M2 ) of the time slot (SLO) of the data frame are set, the bit pattern of the marking bits (M1, M2 ) being alternated in a defined sequence. Upon error detection, the outputting of the data via the loudspeakers is prevented, such that no interfering noise arises.
    • 本发明涉及根据TDM方式经由传输链路(60)进行数据传输的技术领域,对应于时分复用。 这种方法用在音频混合控制台中,以便将多个音频频道的采样字共同传送到音频DSP处理器(10),并且在处理之后将它们从所述处理器传送回输出处理器(20 )。 由于数据输出处理是借助于DMA单元(11)以自动的方式执行的,所以在出现错误的情况下会发生严重的干扰噪声,所述噪声也通过扬声器输出。 本发明基于避免这种干扰效应的目的。 使用基于数据帧标记的错误检测方法。 为此,设置数据帧的时隙(SLO)的多个标记位(M1,M2),标记位(M1,M2)的位模式以规定的顺序交替。 在错误检测时,防止通过扬声器输出数据,使得不产生干扰噪声。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR DETERMINING IN A 2ND SCREEN DEVICE WHETHER THE PRESENTATION OF WATERMARKED AUDIO CONTENT RECEIVED VIA AN ACOUSTIC PATH FROM A 1ST SCREEN DEVICE HAS BEEN STOPPED
    • 用于确定第二屏幕设备的方法和装置,无论通过来自第一屏幕设备的声音路径被接收的水印音频内容的呈现已被停止
    • WO2015154966A1
    • 2015-10-15
    • PCT/EP2015/055911
    • 2015-03-20
    • THOMSON LICENSING
    • BAUM, Peter GeorgCHEN, Xiao-MingARNOLD, MichaelGRIES, Ulrich
    • G10L19/018
    • G10L19/018
    • For determining in a 2nd screen whether or not watermarked audio content received from a 1st screen has been stopped, a watermark symbol detection in the received audio content and a related detection strength value determination is carried out. In case no watermark symbol has been detected, a received expected detection strength value is compared with a detection strength threshold value. If the expected detection strength value is greater than the detection strength threshold value, it is decided that content has been stopped in the 1st screen device. If not,it is decided that content has not been stopped in the 1st screen device. In case a watermark symbol has been detected,the detection strength value is compared with the expected detection strength value,a correspondingly updated detection strength threshold value is calculated, and it is decided that the content has not been stopped in the 1st screen device.
    • 为了在第二屏幕中确定是否已经停止从第一屏幕接收到的加水印的音频内容,则接收到的音频内容中的水印符号检测和相关的检测强度值确定被执行。 在没有检测到水印符号的情况下,将接收到的期望检测强度值与检测强度阈值进行比较。 如果预期检测强度值大于检测强度阈值,则判定在第1屏幕装置内容已被停止。 如果没有,则决定第一屏幕设备中的内容尚未停止。 在检测到水印符号的情况下,将检测强度值与预期检测强度值进行比较,计算相应更新的检测强度阈值,并且判定在第一屏幕装置中内容尚未停止。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR DETERMINING WHETHER A SPECIFIC WATERMARK SYMBOL OUT OF ONE OR MORE CANDIDATE WATERMARK SYMBOLS IS EMBEDDED IN A CURRENT SECTION OF A RECEIVED AUDIO SIGNAL
    • 用于确定一个或多个候选水印符号的特定水印符号被嵌入到接收的音频信号的电流部分中的方法和装置
    • WO2016045977A1
    • 2016-03-31
    • PCT/EP2015/070685
    • 2015-09-10
    • THOMSON LICENSING
    • ARNOLD, MichaelBAUM, Peter GeorgCHEN, XiaomingGRIES, Ulrich
    • G10L19/018
    • G10L19/018
    • From sets of correlation result values it is determined whether a specific watermark symbol out of one or more candidate watermark symbols is embedded in a received audio signal. For all candidate watermark symbols, from each corresponding set of correlation result values, a group (n p ) of maximal values together form a peak vector (v i . From the normalised peak values (w i a probability distribution function (pdf, g(W i )) and a false positive probability function (P fp (w i )) are calculated. If the values of the false positive probability function are smaller than a first threshold value (T min ) / the current candidate watermark symbol is taken as a true watermark symbol. If not yet all candidate watermark symbols have been processed, the next candidate watermark symbol is selected. Otherwise, a minimal value (P* fp ) of the false positive probability functions for all candidate watermark symbols is determined (76) and is compared (77) with a second threshold value (T max ). If it is smaller than the second threshold value, the current candidate watermark symbol is selected. Otherwise, it is determined (78) that no watermark symbol is present.
    • 从相关结果值集合中,确定一个或多个候选水印符号中的特定水印符号是否嵌入在接收到的音频信号中。 对于所有候选水印符号,从每个对应的相关结果值集合,最大值的组(np)一起形成峰值向量(vi。从归一化峰值(wia概率分布函数(pdf,g(W i)) 并计算假阳性概率函数(P fp(wi)),如果假正概率函数的值小于第一阈值(Tmin),则将当前候选水印符号作为真实水印符号,如果 尚未处理所有候选水印符号,选择下一个候选水印符号,否则确定所有候选水印符号的假正概率函数的最小值(P * fp)(76)并进行比较(77) 具有第二阈值(Tmax),如果小于第二阈值,则选择当前候选水印符号,否则确定(78)不存在水印符号。