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    • 86. 发明申请
    • Servlet API and Method for XMPP Protocol
    • Servlet API和XMPP协议方法
    • US20110258305A1
    • 2011-10-20
    • US13088394
    • 2011-04-17
    • Wei ChenXiaopu ZhuZhiyu LiuPubing Zhang
    • Wei ChenXiaopu ZhuZhiyu LiuPubing Zhang
    • G06F15/173
    • H04L41/20H04L12/1813H04L51/04H04L67/02H04L67/142
    • A communication system and method include a server hosting an interactive voice response or self-help application in a Java virtual machine. In order to leverage the advantages and facilities of the Java servlet model, a Java XMPP (Extensible Messaging and Presence Protocol) servlet container is provided for the server so that the communication application can be programmed with objects defined by an XMPP servlet API, as well as objects defined by the standards-based Java EE platform such as HTTP and SIP servlets, in order to service an XMPP client. In addition to the generic class objects of the Java servlet model, the API also provides a set of XMPP-specific class objects. The Java XMPP servlet container includes a network point at a transport level for handling network connections, an XMPP service layer for managing XMPP sessions and streams, and an application layer for managing XMPP stanzas.
    • 通信系统和方法包括在Java虚拟机中托管交互式语音响应或自助应用的服务器。 为了利用Java servlet模型的优点和功能,为服务器提供了Java XMPP(可扩展消息传递和存在协议)servlet容器,以便通信应用程序也可以使用XMPP servlet API定义的对象进行编程 作为由基于标准的Java EE平台(如HTTP和SIP servlet)定义的对象,以便为XMPP客户端提供服务。 除了Java servlet模型的通用类对象之外,API还提供了一组特定于XMPP的类对象。 Java XMPP servlet容器包含用于处理网络连接的传输级别的网络点,用于管理XMPP会话和流的XMPP服务层以及用于管理XMPP节的应用层。
    • 88. 发明授权
    • Polarization demultiplexing optical receiver using polarization oversampling and electronic polarization tracking
    • 使用偏振过采样和电子偏振跟踪的极化解复用光接收机
    • US08014686B2
    • 2011-09-06
    • US12052541
    • 2008-03-20
    • Jeffrey Thomas RahnWei Chen
    • Jeffrey Thomas RahnWei Chen
    • H04B10/06
    • H04B10/697H04B10/677
    • An optical receiver utilizes differential quadrature phase-shift keying (DQPSK) demodulation and electrical crosstalk rejection to relax requirements on filter misalignment with a carrier signal and to enable electronic polarization demultiplexing of optical signals. The optical receiver uses additional polarization state information when performing differential phase measurements on the optical signals. This provides information that ensures that data can be recovered by the optical receiver regardless of the state of polarization introduced during transmission of the optical signals. The optical receiver over samples the optical signals, which enables electrical polarization demultiplexing of the optical signals. The electrical crosstalk rejection provides a tracking algorithm that isolates received optical signals, and reduces crosstalk between data sequences.
    • 光接收机利用差分正交相移键控(DQPSK)解调和电串扰抑制来放宽对载波信号的滤波器未对准的要求,并实现光信号的电子偏振解复用。 当对光信号执行差分相位测量时,光接收机使用额外的偏振状态信息。 这提供了确保数据可以由光接收机恢复的信息,而不管在光信号的传输期间引入的极化状态如何。 光接收机对光信号进行采样,可实现光信号的电偏振解复用。 电串扰抑制提供了一种跟踪算法,其隔离接收到的光信号,并减少数据序列之间的串扰。
    • 89. 发明申请
    • System and Method for Reducing In-Band Interference for a Shared Antenna
    • 用于减少共享天线的带内干扰的系统和方法
    • US20110212696A1
    • 2011-09-01
    • US13032913
    • 2011-02-23
    • Wilhelm Steffen HahnWei Chen
    • Wilhelm Steffen HahnWei Chen
    • H04B1/44
    • H04B1/525
    • An interference compensation circuit for suppressing in-band or nearby out-of-band interference in a shared antenna communication system. The communication system can include a first communication device having a transmitter for transmitting signals within a first frequency band and a second communication device having a receiver for receiving electromagnetic signals within a second frequency band. The second frequency band can be adjacent or overlapping the first frequency band. The communication system also can include an interference compensation circuit that receives samples of the signals transmitted by the transmitter and generate an interference compensation signal in response to adjusting amplitude, phase, and/or delay of the samples. The interference compensation signal can suppress interference imposed on the receiver by the signals transmitted by the transmitter when applied to a signal receive path of the receiver.
    • 一种用于抑制共享天线通信系统中的带内或附近带外干扰的干扰补偿电路。 通信系统可以包括具有用于在第一频带内发送信号的发射机的第一通信设备和具有用于在第二频带内接收电磁信号的接收机的第二通信设备。 第二频带可以与第一频带相邻或重叠。 通信系统还可以包括干扰补偿电路,其接收由发射机发送的信号的采样,并且响应于调整样本的幅度,相位和/或延迟而产生干扰补偿信号。 当施加到接收机的信号接收路径时,干扰补偿信号可以抑制由发射机发送的信号对接收机施加的干扰。
    • 90. 发明授权
    • Multiprocessor method and system using stacked processor modules and board-to-board connectors
    • 多处理器方法和使用堆叠处理器模块和板对板连接器的系统
    • US07991934B2
    • 2011-08-02
    • US12558255
    • 2009-09-11
    • Li YaoWei Chen
    • Li YaoWei Chen
    • G06F13/00
    • G06F15/17
    • A multiprocessor system is provided, comprising a baseboard, for arranging peripheral equipments; and a plurality of processor modules, each equipped with a processor and a board-to-board connector; wherein the plurality of processor modules are stacked up, with board-to-board connectors being electrically connected between the processor modules and between the processor modules and the baseboard; the processors communicate with the peripheral equipments in accordance with a specific bus specification; and the operations of the plurality of processor modules are coordinated by routes provided between the processor modules and between the processor modules and the baseboard.
    • 提供一种多处理器系统,包括用于布置外围设备的基板; 以及多个处理器模块,每个处理器模块配备有处理器和板对板连接器; 其中所述多个处理器模块被堆叠起来,其中板对板连接器电连接在所述处理器模块之间以及所述处理器模块和所述基板之间; 处理器根据特定总线规格与周边设备进行通信; 并且多个处理器模块的操作由设置在处理器模块之间以及处理器模块和基板之间的路由进行协调。