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    • 1. 发明申请
    • BROADCAST METHOD AND SYSTEM
    • 广播方法与系统
    • US20110310251A1
    • 2011-12-22
    • US13220320
    • 2011-08-29
    • David J. KeenerJohn S. JonesPeter L. Ward
    • David J. KeenerJohn S. JonesPeter L. Ward
    • H04N17/00
    • H04B7/15H04H60/04H04H60/07
    • A method and system for airing broadcast signals is disclosed. Preferably, the system includes a production truck interface panel receiving a broadcast signal. A transmission relay circuit relays the signal from the interface panel to a broadcast network, and preferably including a broadcast signal detection circuit, and a signal processing circuit. The detection circuit determines a signal type of the broadcast signal, and the signal processing circuit processes the determined signal type. The system preferably further includes an operations control station displaying the determined type of broadcast signal. The method for airing broadcast signals over the broadcast network preferably includes the steps of providing the broadcast signal to the transmission relay circuit, detecting the broadcast signal type with the broadcast signal sensing and discerning circuit; and reconfiguring the signal processing circuit when the configuration of the signal processing circuit does not support transmission of the determined broadcast signal type.
    • 公开了广播信号播放的方法和系统。 优选地,该系统包括接收广播信号的生产卡车接口面板。 传输中继电路将来自接口面板的信号中继到广播网络,并且优选地包括广播信号检测电路和信号处理电路。 检测电路确定广播信号的信号类型,并且信号处理电路处理确定的信号类型。 该系统优选地还包括显示确定类型的广播信号的操作控制站。 通过广播网络广播广播信号的方法优选地包括以下步骤:向广播信号发送中继电路提供广播信号,用广播信号检测和识别电路检测广播信号类型; 并且当信号处理电路的配置不支持所确定的广播信号类型的传输时,重新配置信号处理电路。
    • 3. 发明申请
    • ONE WAY SRS INFORMATION TRANSMISSION METHOD
    • 一路SRS信息传输方法
    • US20110013646A1
    • 2011-01-20
    • US12551505
    • 2009-08-31
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • H04L29/02
    • H04L65/4076H04N21/2343H04N21/2381H04N21/64707
    • An exemplary method of one way transmission of information is provided, the exemplary method steps preferably include partitioning a portion of each network device along a transmission path (based on a configuration of a source adaptive translation device), to form a source dedicated one way transmission path, analyzing source customer supplied information received by the source adaptive translation device to discern the source supplied information format, mapping the source discerned supplied information into a first synchronous transport signal using the source adaptive translation device, transmitting the first synchronous transport signal across the source dedicated one way transmission path, receiving the first synchronous transport signal at a destination adaptive destination device, and remapping the received first synchronous transport signal back into the discerned source supplied information using the destination adaptive translation device.
    • 提供了单向传输信息的示例性方法,所述示例性方法步骤优选地包括沿着传输路径划分每个网络设备的一部分(基于源自适应翻译设备的配置),以形成源专用单向传输 分析由源自适应翻译装置接收的源客户提供的信息以辨别源提供的信息格式,使用源自适应翻译装置将源识别的提供的信息映射到第一同步传输信号中,在源上发送第一同步传输信号 专用单向传输路径,在目的地自适应目的地设备处接收第一同步传输信号,并且使用目的地自适应翻译设备将接收的第一同步传输信号重新映射回所识别的源提供的信息。
    • 5. 发明授权
    • One way SRS information transmission method
    • 单向SRS信息传输方式
    • US08401035B2
    • 2013-03-19
    • US12551505
    • 2009-08-31
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • H04L29/02
    • H04L65/4076H04N21/2343H04N21/2381H04N21/64707
    • An exemplary method of one way transmission of information is provided, the exemplary method steps preferably include partitioning a portion of each network device along a transmission path (based on a configuration of a source adaptive translation device), to form a source dedicated one way transmission path, analyzing source customer supplied information received by the source adaptive translation device to discern the source supplied information format, mapping the source discerned supplied information into a first synchronous transport signal using the source adaptive translation device, transmitting the first synchronous transport signal across the source dedicated one way transmission path, receiving the first synchronous transport signal at a destination adaptive destination device, and remapping the received first synchronous transport signal back into the discerned source supplied information using the destination adaptive translation device.
    • 提供了单向传输信息的示例性方法,所述示例性方法步骤优选地包括沿着传输路径划分每个网络设备的一部分(基于源自适应翻译设备的配置),以形成源专用单向传输 分析由源自适应翻译装置接收的源客户提供的信息以辨别源提供的信息格式,使用源自适应翻译装置将源识别的提供的信息映射到第一同步传输信号中,在源上发送第一同步传输信号 专用单向传输路径,在目的地自适应目的地设备处接收第一同步传输信号,并且使用目的地自适应翻译设备将接收的第一同步传输信号重新映射回所识别的源提供的信息。
    • 6. 发明授权
    • One way information transmission method
    • 单向信息传输方式
    • US08064431B2
    • 2011-11-22
    • US12502843
    • 2009-07-14
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • Ronald A. SaidJohn S. JonesSunil M. Gottipati
    • H04L12/28
    • H04L65/605H04L65/4084H04L67/322
    • A method of one way transmission of information is provided. Preferably, the method steps include analyzing customer supplied information to determine a format to be selected, transmission priority, available transmission resources, and transmission destination. The preferred steps also include, determining a media transport method based on the transmission priority, transmission destination, and available transmission resources, and scheduling transmission of an information payload portion of the customer supplied information as a pre-emptible data reservation, based on a determined media transport method. The steps further preferably include, transforming the information payload into a selected format, storing the information payload in its formatted form on a non-volatile storage medium, encapsulating the information payload in its selected format within a media transport format, and transmitting the encapsulated information payload to the transmission destination.
    • 提供了一种单向传输信息的方法。 优选地,方法步骤包括分析客户提供的信息以确定要选择的格式,传输优先级,可用传输资源和传输目的地。 优选的步骤还包括:基于传输优先级,传输目的地和可用的传输资源来确定媒体传输方法,并且基于所确定的传送优先级,传输目的地和可用传输资源来调度客户提供的信息的信息有效载荷部分作为可预先预定的数据预留的传输 媒体传输方式。 这些步骤还优选地包括将信息有效载荷变换成所选格式,将其格式化形式的信息有效载荷存储在非易失性存储介质上,以媒体传输格式将信息有效载荷以其所选格式封装,并传送封装信息 有效载荷到传输目的地。
    • 7. 发明授权
    • Multi-compartment container with collapsible bottom for mechanized
recyclable-trash collection
    • 具有可折叠底部的多隔间容器用于机械化可回收垃圾收集
    • US5228591A
    • 1993-07-20
    • US958817
    • 1992-10-09
    • John S. Jones
    • John S. Jones
    • B65F1/12B65F3/02
    • B65F3/0203B65F1/125Y10S220/909
    • A multi-compartment trash container that comprises two main components. An inner core consists of a circular bottom plate with a convex surface sloped downward toward the perimeter of the container and several vertical baffles connected to a common vertical shaft extending upward from the center of the bottom plate, so that wedge-like sections with slanted bottoms are formed around the vertical axis of the container. An outer cover consists of a conforming bottomless cylindrical structure having a top end with openings corresponding to the sections in the inner core and a collar at the center for slidably engaging the top of the vertical shaft in the inner core. Thus, the outer cover is slidably mounted on the inner core to form a container with multiple enclosed compartments and a spring-loaded push-plate is provided at the top of the shaft to push the inner core downward with respect to the outer cover. An outward annular flange attached to the bottom edge of the cylindrical structure provides a base for supporting the outer cover while the inner core is made to slide downward through an appropriately sized hopper to discharge its contents into a collection vehicle. A specially designed handle makes it possible for a mechanized arm on the vehicle to lift the container and correctly align it for positioning on the hopper.
    • 一个多间隔垃圾箱,包括两个主要部件。 内芯由圆形底板组成,凸形表面朝向容器的周边向下倾斜,并且连接到从底板的中心向上延伸的共同竖直轴的几个垂直挡板,使得具有倾斜底部的楔形部分 围绕容器的垂直轴线形成。 外盖由符合条件的无底圆柱形结构组成,其顶端具有对应于内芯中的部分的开口和位于中心的轴环,用于可滑动地接合内芯中垂直轴的顶部。 因此,外盖可滑动地安装在内芯上以形成具有多个封闭隔室的容器,并且在轴的顶部设置弹簧加载的推板,以相对于外盖向下推动内芯。 附接到圆柱形结构的底部边缘的向外的环形凸缘提供用于支撑外盖的基部,同时使内芯向下滑动通过适当尺寸的料斗以将其内容物排放到收集车辆中。 专门设计的手柄使得车辆上的机械臂可以提起容器并正确对准以便定位在料斗上。
    • 8. 发明授权
    • Broadcast method and system
    • 广播方式和系统
    • US08823878B2
    • 2014-09-02
    • US13220320
    • 2011-08-29
    • David J. KeenerJohn S. JonesPeter L. Ward
    • David J. KeenerJohn S. JonesPeter L. Ward
    • H04N5/38H04B7/15H04H60/04H04H60/07
    • H04B7/15H04H60/04H04H60/07
    • A method and system for airing broadcast signals is disclosed. Preferably, the system includes a production truck interface panel receiving a broadcast signal. A transmission relay circuit relays the signal from the interface panel to a broadcast network, and preferably including a broadcast signal detection circuit, and a signal processing circuit. The detection circuit determines a signal type of the broadcast signal, and the signal processing circuit processes the determined signal type. The system preferably further includes an operations control station displaying the determined type of broadcast signal. The method for airing broadcast signals over the broadcast network preferably includes the steps of providing the broadcast signal to the transmission relay circuit, detecting the broadcast signal type with the broadcast signal sensing and discerning circuit; and reconfiguring the signal processing circuit when the configuration of the signal processing circuit does not support transmission of the determined broadcast signal type.
    • 公开了广播信号播放的方法和系统。 优选地,该系统包括接收广播信号的生产卡车接口面板。 传输中继电路将来自接口面板的信号中继到广播网络,并且优选地包括广播信号检测电路和信号处理电路。 检测电路确定广播信号的信号类型,并且信号处理电路处理确定的信号类型。 该系统优选地还包括显示确定类型的广播信号的操作控制站。 通过广播网络广播广播信号的方法优选地包括以下步骤:向广播信号发送中继电路提供广播信号,用广播信号检测和识别电路检测广播信号类型; 并且当信号处理电路的配置不支持所确定的广播信号类型的传输时,重新配置信号处理电路。
    • 10. 发明授权
    • Broadcast transmission relay circuit
    • 广播传输中继电路
    • US08009236B2
    • 2011-08-30
    • US11591818
    • 2006-11-01
    • David J. KeenerJohn S. JonesPeter L. Ward
    • David J. KeenerJohn S. JonesPeter L. Ward
    • H04N5/38
    • H04B7/15H04H60/04H04H60/07
    • A transmission relay circuit, a broadcast signal relay method, and a signal detection device are disclosed. Preferably, the transmission relay circuit includes a microcontroller, a broadcast signal sensing and discerning circuit configured for determining the broadcast signal selected from a group consisting of (NTSC, ASI, DS-3, SDI, and HD-SDI signals). The method preferably includes the steps of determining a signal type, directing the signal to an analog broadcast signal processing circuit when the signal is determined to be to be an analog video signal, directing the signal to a digital broadcast signal processing circuit when the signal is either a digital video signal, or a digital video transport signal, and relaying the processed signal to a local loop provider. The detection device preferably includes at least a multi-layer printed circuit board with an isolation/buffer amplifier and terminator, and a signal detection circuit for detecting and determining the broadcast signal type.
    • 公开了传输中继电路,广播信号中继方法和信号检测装置。 优选地,传输中继电路包括微控制器,配置用于确定从由(NTSC,ASI,DS-3,SDI和HD-SDI信号)组成的组中选择的广播信号的广播信号感测和识别电路。 该方法优选地包括以下步骤:当信号被确定为模拟视频信号时,确定信号类型,将信号引导到模拟广播信号处理电路,当信号是信号时将信号引导到数字广播信号处理电路 数字视频信号或数字视频传输信号,并将处理的信号中继到本地环路提供商。 检测装置优选地至少包括具有隔离/缓冲放大器和终端器的多层印刷电路板,以及用于检测和确定广播信号类型的信号检测电路。