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    • 25. 发明申请
    • GAMING HEADSET AND CHARGING METHOD
    • 游戏头和充电方法
    • US20090252344A1
    • 2009-10-08
    • US12099046
    • 2008-04-07
    • Xiadong MaoRuxin ChenSeth C.H. Luisi
    • Xiadong MaoRuxin ChenSeth C.H. Luisi
    • H04R1/10
    • H04R1/1025H04R1/1041H04R3/005H04R2201/107H04R2205/021H04R2420/03H04R2420/07
    • An audio headset may comprise a case, near field microphone and far field microphone. A speaker, processor, memory, battery, charging interface and cradle detection circuit may be mounted to the case. Processor-executable instructions embodied in the memory, may be configured to implement a battery charging method. The headset may be shut off in response to placement of the headset in a charging cradle. The far-field microphone is turned on but not the near-field microphone. The battery may then be charged from the cradle. A headset having near-field and far-field microphones may be used to distinguish between user speech and competing sounds by generating signals from the sounds detected by each microphone and comparing the strengths of the signals. The signals may be processed as user speech if they are of comparable strength. Otherwise, the near-field signal may be processed as user speech and the far-field signal as competing sounds.
    • 音频耳机可以包括外壳,近场麦克风和远场麦克风。 扬声器,处理器,存储器,电池,充电接口和支架检测电路可以安装在壳体上。 在存储器中体现的处理器可执行指令可以被配置为实现电池充电方法。 耳机可以响应于将耳机放置在充电座中而被关闭。 远场麦克风开启,但不是近场麦克风。 然后电池可以从支架充电。 具有近场和远场麦克风的耳机可用于通过从由每个麦克风检测到的声音产生信号并比较信号的强度来区分用户语音和竞争声音。 如果信号具有可比较的强度,那么信号可以被用作用户语音。 否则,可以将近场信号作为用户语音处理,将远场信号作为竞争声音进行处理。
    • 26. 发明申请
    • Voice recognition with parallel gender and age normalization
    • 语音识别与并行性别和年龄归一化
    • US20070198261A1
    • 2007-08-23
    • US11358272
    • 2006-02-21
    • Ruxin Chen
    • Ruxin Chen
    • G10L15/00
    • G10L15/32G10L15/065
    • Methods and apparatus for voice recognition are disclosed. A voice signal is obtained and two or more voice recognition analyses are performed on the voice signal. Each voice recognition analysis uses a filter bank defined by a different maximum frequency and a different minimum frequency and wherein each voice recognition analysis produces a recognition probability ri of recognition of one or more speech units, whereby there are two or more recognition probabilities ri. The maximum frequency and the minimum frequency may be adjusted every time speech is windowed and analyzed. A final recognition probability Pƒ is determined based on the two or more recognition probabilities ri.
    • 公开了用于语音识别的方法和装置。 获得语音信号,并对语音信号执行两个或多个语音识别分析。 每个语音识别分析使用由不同的最大频率和不同的最小频率定义的滤波器组,并且其中每个语音识别分析产生一个或多个语音单元的识别的识别概率r i, 两个或更多的识别概率r i i。 每个语音窗口和分析可以调整最大频率和最小频率。 基于两个或更多个识别概率确定最终识别概率P
    • 30. 发明申请
    • SOURCE SEPARATION BY INDEPENDENT COMPONENT ANALYSIS IN CONJUNCTION WITH SOURCE DIRECTION INFORMATION
    • 独立分量分析与源方向信息的分离
    • US20130297296A1
    • 2013-11-07
    • US13464828
    • 2012-05-04
    • Jaekwon YooRuxin Chen
    • Jaekwon YooRuxin Chen
    • G10L19/02
    • G10L21/0272
    • Methods and apparatus for signal processing are disclosed. Source separation can be performed to extract source signals from mixtures of source signals by way of independent component analysis. Source direction information is utilized in the separation process, and independent component analysis techniques described herein use multivariate probability density functions to preserve the alignment of frequency bins in the source separation process. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    • 公开了用于信号处理的方法和装置。 可以通过独立分量分析来执行源分离以从源信号的混合中提取源信号。 在分离过程中使用源方向信息,并且本文描述的独立分量分析技术使用多变量概率密度函数来保持源分离过程中频率仓的对准。 要强调的是,该摘要被提供以符合要求抽象的规则,允许搜索者或其他读者快速确定技术公开内容的主题。 提交它的理解是,它不会用于解释或限制权利要求的范围或含义。