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    • 4. 发明申请
    • Voice Control System with Multiple Microphone Arrays
    • 具有多个麦克风阵列的语音控制系统
    • US20160125882A1
    • 2016-05-05
    • US14531798
    • 2014-11-03
    • Matteo ContoliniTed ApplebaumSankaran Panchapagesan
    • Matteo ContoliniTed ApplebaumSankaran Panchapagesan
    • G10L15/28G10L17/22H04R1/08
    • H04R1/08G10L15/20G10L15/22G10L2015/223G10L2021/02166H04R1/028H04R1/406H04R3/005
    • A voice controlled medical system with improved speech recognition includes a first microphone array, a second microphone array, a controller in communication with the first and second microphone arrays, and a medical device operable by the controller. The controller includes a beam module that generates a first beamed signal using signals from the first microphone array and a second beamed signal using signals from the second microphone array. The controller also includes a comparison module that compares the first and second beamed signals and determines a correlation between the first and second beamed signals. The controller also includes a voice interpreting module that identifies commands within the first and second beamed signals if the correlation is above a correlation threshold. The controller also includes an instrument control module that executes the commands to operate said medical device.
    • 具有改进的语音识别的语音控制医疗系统包括第一麦克风阵列,第二麦克风阵列,与第一和第二麦克风阵列通信的控制器,以及可由控制器操作的医疗设备。 控制器包括波束模块,其使用来自第一麦克风阵列的信号和使用来自第二麦克风阵列的信号的第二波束信号产生第一波束信号。 控制器还包括比较模块,其比较第一和第二波束信号,并确定第一和第二波束信号之间的相关性。 如果相关性高于相关阈值,则控制器还包括语音解释模块,其识别第一和第二发射信号内的命令。 控制器还包括执行操作所述医疗装置的命令的仪器控制模块。
    • 5. 发明申请
    • Multi-User Voice Control System for Medical Devices
    • 医疗器械多用户语音控制系统
    • US20150279368A1
    • 2015-10-01
    • US14227661
    • 2014-03-27
    • Matteo ContoliniTed Applebaum
    • Matteo ContoliniTed Applebaum
    • G10L17/22G10L15/08
    • G10L17/22A61B1/00041A61B5/00A61B5/7405A61B5/749G10L15/00G10L15/08G10L15/142G10L15/32G10L17/00
    • The system includes a controller having first and second speech recognition modules and a decision module. The system includes at least one medical device operable by the controller. The system includes a first microphone in communication with the first speech recognition module, and a second microphone in communication with the second speech recognition module. The first speech recognition module generates a first set of commands from voice signals it receives from the first microphone. The second speech recognition module generates a second set of commands from voice signals it receives from the second microphone. The decision module receives the first and second sets of commands, accepts a subset of the commands in the first and second sets, rejects the remainder of the commands, and assembles a third set of commands comprising the accepted commands. The controller executes the third set of commands to operate the at least one medical device.
    • 该系统包括具有第一和第二语音识别模块和决策模块的控制器。 该系统包括至少一个可由控制器操作的医疗装置。 该系统包括与第一语音识别模块通信的第一麦克风和与第二语音识别模块通信的第二麦克风。 第一语音识别模块从其从第一麦克风接收的语音信号产生第一组命令。 第二语音识别模块从其从第二麦克风接收的语音信号产生第二组命令。 决策模块接收第一组和第二组命令,接受第一组和第二组中的命令的子集,拒绝其余的命令,并组合包含所接受的命令的第三组命令。 控制器执行第三组命令以操作至少一个医疗装置。
    • 6. 发明授权
    • Assistive call center interface
    • 辅助呼叫中心接口
    • US07103553B2
    • 2006-09-05
    • US10454716
    • 2003-06-04
    • Ted ApplebaumJean-Claude Junqua
    • Ted ApplebaumJean-Claude Junqua
    • G10L15/00
    • G10L15/1822
    • Unstructured voice information from an incoming caller is processed by automatic speech recognition and semantic categorization system to convert the information into structured data that may then be used to access one or more databases to retrieve associated supplemental data. The structured data and associated supplemental data are then made available through a presentation system that provides information to the call center agent and, optionally, to the incoming caller. The system thus allows a call center information processing system to handle unstructured voice input for use by the live agent in handling the incoming call and for storage and retrieval at a later time. The semantic analysis system may be implemented by a global parser or by an information retrieval technique, such as latent semantic analysis. Co-occurrence of keywords may be used to associate prior calls with an incoming call to assist in understanding the purpose of the incoming call.
    • 来自呼叫者的非结构化语音信息由自动语音识别和语义分类系统处理,以将信息转换成结构化数据,然后可以用于访问一个或多个数据库以检索相关联的补充数据。 结构化数据和相关的补充数据然后通过向呼叫中心代理提供信息并且可选地提供给传入呼叫者的呈现系统可用。 因此,该系统允许呼叫中心信息处理系统处理非结构化语音输入以供实时代理使用以处理来话呼叫并在以后的时间进行存储和检索。 语义分析系统可以由全局解析器或诸如潜在语义分析之类的信息检索技术来实现。 关键字的共现可以用于将先前的呼叫与呼入呼叫相关联,以帮助理解来话呼叫的目的。