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    • 91. 发明授权
    • Blind channel detection techniques
    • 盲通道检测技术
    • US08139535B2
    • 2012-03-20
    • US12381610
    • 2009-03-13
    • Yi HsuanPing Wang
    • Yi HsuanPing Wang
    • H04W4/00
    • H04W24/02H04W84/045
    • Techniques for use in a blind detection process of information elements. Channels can be allocated into groups. For each group, resource blocks of each channel can be further divided into subspaces. A base station may communicate a number of channels in a group, a number of subspaces allocated to a group of channels, and a bit shift value to all mobile stations via non-specific user channels to a mobile station. The mobile station uses a blind detection scheme and the number of channels allocated per group, a number of sub-spaces per group of channels, and a bit shift value to locate an information element assigned to the mobile station. A number of blind detection trials may be capped to a sum of a number of channels for all allocated groups.
    • 在信息元素的盲检测过程中使用的技术。 频道可以分组。 对于每个组,每个通道的资源块可以进一步分为子空间。 基站可以将组中的多个信道,分配给一组信道的子空间数量,以及通过非特定用户信道向移动台向所有移动站传送比特移位值。 移动站使用盲检测方案,每组分配的信道数量,每组信道的子空间数,以及位移值,以定位分配给移动站的信息元素。 盲目检测试验可能会被限制为所有分配组的多个通道的总和。
    • 94. 发明申请
    • HIGH DENSITY FIBER DISTRIBUTION HUB
    • 高密度纤维分配机构
    • US20100329624A1
    • 2010-12-30
    • US12867069
    • 2009-02-27
    • Junsheng ZhouZhiyong XuPing WangPierre Bonvallat
    • Junsheng ZhouZhiyong XuPing WangPierre Bonvallat
    • G02B6/46
    • G02B6/4454
    • The present invention relates to a fiber distribution hub. The fiber distribution hub comprises a base case comprising at least one port portion for introducing an optical cable, wherein the optical cable includes a first fiber; a splitter case releasably attached to the base case; a splice tray rotatably hinged to the splitter case; and a cover engagable with the base case to enclose the splitter case and the splice tray. The first fiber is connected to a second fiber in the splice tray, and the second fiber is connected with a splitter in the splitter case to separate the second fiber into a plurality of separate third fibers. Thus, the invention provides a compact and modular fiber distribution hub. In addition, the fiber distribution hub can join optical fibers by mechanical splices, fusion splices and fiber optic connectors in a single unit.
    • 本发明涉及一种光纤分配集线器。 所述光纤分配集线器包括:基座,其包括用于引入光缆的至少一个端口部分,其中所述光缆包括第一光纤; 可拆卸地附接到所述基座的分离器壳体; 一个可旋转地铰接到分离器壳体上的接合盘; 以及可与基座壳体接合的盖子,以封闭分离器壳体和接合托盘。 第一光纤连接到接合盘中的第二光纤,第二光纤与分离器壳体中的分束器连接,以将第二光纤分离成多个单独的第三光纤。 因此,本发明提供了一种紧凑且模块化的光纤分配集线器。 此外,光纤分配集线器可以通过机械接头,熔接接头和光纤连接器在一个单元中连接光纤。
    • 96. 发明授权
    • Method for providing a pluggable custom data binding system
    • 提供可插拔自定义数据绑定系统的方法
    • US07827197B2
    • 2010-11-02
    • US11002695
    • 2004-12-02
    • Richard Joseph Scheuerle, Jr.Ping Wang
    • Richard Joseph Scheuerle, Jr.Ping Wang
    • G06F7/00
    • G06F8/70G06F9/541H04L67/02H04L67/16
    • The present invention is directed to a pluggable custom data binding system and method utilizing a generic data structure exchanged between a run-time system and a user define binding logic in Web Service Applications. The custom data binding system may replace the existing mappings for XML schema types. The custom binder is a function that works with the pairing of a particular XML schema type and Java type. The custom binder may define an interface including serialize and de-serialize methods to convert between Java objects and SOAPElements. After the custom binder is plugged into the run-time system, this custom binder may interact with the run-time system through use of SOAPElement. The custom binding provider may aggregate related custom binders to support particular custom data bindings. The custom binding provider may be created for a specific application that has a few XML schema types that are not supported by the JAX-RPC specification.
    • 本发明涉及一种可插拔的定制数据绑定系统和方法,利用在运行时系统和用户之间交换的通用数据结构在Web服务应用程序中定义绑定逻辑。 自定义数据绑定系统可以替换XML模式类型的现有映射。 自定义绑定器是与特定的XML模式类型和Java类型的配对一起使用的功能。 自定义绑定器可以定义一个接口,包括在Java对象和SOAPElements之间进行转换的序列化和解除序列化方法。 将自定义绑定器插入运行时系统后,此自定义绑定器可以通过使用SOAPElement与运行时系统进行交互。 自定义绑定提供者可以聚合相关的自定义绑定以支持特定的自定义数据绑定。 可以为具有JAX-RPC规范不支持的几种XML模式类型的特定应用程序创建自定义绑定提供程序。
    • 97. 发明申请
    • METHOD FOR INDUSTRIAL WIRELESS COMMUNICATION BASED ON SELF-ADAPTIVE CHANNEL HOPPING WITHIN THE TIMESLOT
    • 基于自适应通道的工业无线通信方法
    • US20100061362A1
    • 2010-03-11
    • US12554064
    • 2009-09-04
    • Ping WangQuan Wang
    • Ping WangQuan Wang
    • H04J3/06H04J3/00
    • H04W74/0808H04B1/713H04B1/74
    • The present invention is intended to protect an industrial wireless communication method based on self-adaptive channel hopping within timeslot, which belongs to industrial wireless communication technology field. Aiming to solving existing problem that wireless devices can not correspondingly self-adaptive channel hopping according to environment changing, a method for making the two communication sides self-generate and execute channel switch when the preferred channel was interfered. The sender will monitor whether the channel is idle within SWTW before sending data through mechanisms such as CCA or non-persistent CSMA. If the channel is still busy till the SWTW times out, the sender will give up sending data and implement channel switching control command by considering this communications channel as interfered. If no packets were received till the RWTW time-outs, the receiver will thinks the communication channel was interfered and automatically implement channel switching control commands. Thus, the receiver will change its backup channel into communication channel. So far, the sender and receiver all independently hop to the backup channel for new communication process after a channel switching cycle. Different time synchronization algorithm will be used in accordance with whether channel switch is carried out or not. The present invention can fully enhance the channel utilization and communication success rate, improve the reliability and real-time of data communication, reduce additional network load by means of reduced retransmission, and perfectly satisfy the requirement of industrial wireless application.
    • 本发明旨在保护属于工业无线通信技术领域的时隙内基于自适应信道跳频的工业无线通信方法。 针对解决现有问题,无线设备根据环境变化不能对应地进行自适应信道跳频,当优选信道受到干扰时,使两个通信侧自身生成并执行信道切换的方法。 发送方将在通过诸如CCA或非持久性CSMA的机制发送数据之前监视SWTW内的信道是否空闲。 如果信道仍然忙,直到SWTW超时,发送方将放弃发送数据,并通过考虑该通信信道干扰来实现信道切换控制命令。 如果在RWTW超时之前没有接收到数据包,则接收机将认为通信信道受到干扰,并自动实现信道切换控制命令。 因此,接收机将其备份信道改为通信信道。 到目前为止,发送方和接收方都在信道切换周期后独立地跳到备用信道进行新的通信过程。 根据是否进行通道切换,将使用不同的时间同步算法。 本发明可以充分增强信道利用率和通信成功率,提高数据通信的可靠性和实时性,通过减少重传减少额外的网络负载,完全满足工业无线应用的要求。
    • 98. 发明授权
    • Ground fault circuit interrupter with end-of-life protection
    • 具有寿命终止保护功能的接地故障电路断路器
    • US07535371B2
    • 2009-05-19
    • US11449991
    • 2006-06-09
    • Ping Wang
    • Ping Wang
    • G08B21/00
    • H02H3/335G01R31/3277H02H3/044
    • A circuit interrupter with end-of-life protection has four components: 1) a control circuit to activate an electromagnetic unit upon detecting a predetermined condition; 2) a fuse coupled between the control circuit and the power supply; 3) an end life sensing circuit coupled to the control circuit; and 4) an end life indicating circuit coupled to the end life sensing circuit and the power supply. The end life sensing circuit includes a light emitting device and a light sensitive device controlled by the light emitting device. The end life indicating circuit includes a visual indicator to indicate that the circuit interrupter reaches the end of its life. Another circuit interrupter with end-of-life protection has three components: 1) a control circuit to activate an electromagnetic unit upon detecting a predetermined condition; 2) a fuse coupled between the control circuit and the power supply; and 3) an end life sensing and indicating circuit coupled to the control circuit. The end life sensing and indicating circuit includes a light emitting device which is turned off to indicate that the circuit interrupter reached the end of its life.
    • 具有寿命终止保护的断路器具有四个部件:1)控制电路,用于在检测到预定条件时激活电磁单元; 2)连接在控制电路和电源之间的熔丝; 3)耦合到控制电路的终端感测电路; 和4)终端寿命指示电路,其耦合到端部寿命感测电路和电源。 端部寿命感测电路包括发光器件和由发光器件控制的光敏器件。 终端指示电路包括用于指示电路断路器达到其寿命结束的视觉指示器。 具有寿命终止保护的另一电路断路器具有三个部件:1)控制电路,用于在检测到预定条件时激活电磁单元; 2)连接在控制电路和电源之间的熔丝; 以及3)耦合到控制电路的端部寿命感测和指示电路。 终端感测和指示电路包括关闭以指示电路断路器达到其使用寿命的发光装置。