会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Frame structure and structure for supporting automotive power unit
    • 支持汽车动力单元的框架结构和结构
    • US20070119648A1
    • 2007-05-31
    • US11598665
    • 2006-11-14
    • Tadashi UdoChun Nie
    • Tadashi UdoChun Nie
    • B60K17/16B60K17/24B62D21/00
    • B62D21/00B62D21/04B62D29/041
    • Generally triangular first and second longitudinal side portions are arranged in the lower half region of a longitudinal side member between the first and second flat members vertically spaced apart from each other and form projections and depressions longitudinally and alternately. Generally inverted triangular third and fourth longitudinal side portions are arranged in the upper half region between the first and second flat members and form projections and depressions longitudinally and alternately. The first longitudinal side portions are vertically opposed to the third longitudinal side portions such that the first and third longitudinal side portions form projections and depressions. The second longitudinal side portions are vertically opposed to the fourth longitudinal side portions such that the second and fourth longitudinal side portions form projections and depressions. The first through fourth longitudinal side portions are integrally coupled through associated rhombic connecting ribs located midway between the first and second flat members.
    • 通常,三角形的第一和第二纵向侧部分布置在垂直彼此间隔开的第一和第二平坦部件之间的纵向侧部件的下半部分中,并且纵向和交替地形成凹凸。 通常,倒三角形的第三和第四纵向侧部布置在第一和第二平坦部件之间的上半部区域中,并且纵向和交替地形成凹凸。 第一纵向侧部与第三纵向侧部垂直相对,使得第一和第三纵向侧部形成凹凸。 第二纵向侧部与第四纵向侧部垂直相对,使得第二纵向侧部和第四纵向侧部形成凹凸。 第一至第四纵向侧部通过位于第一和第二平坦部件之间的中间的相关联的菱形连接肋整体联接。
    • 4. 发明授权
    • Robust cooperative relaying in a wireless LAN: cross-layer design
    • 无线LAN中的鲁棒协同中继:跨层设计
    • US08611271B2
    • 2013-12-17
    • US12938101
    • 2010-11-02
    • Elza ErkipPei LiuChun NieShivendra S. Panwar
    • Elza ErkipPei LiuChun NieShivendra S. Panwar
    • H03C7/00
    • H04B7/15592H04B7/026H04W74/08H04W88/04
    • A distributed and opportunistic medium access control (MAC) layer protocol for randomized distributed space-time coding (R-DSTC), which may be deployed in an IEEE 802.11 wireless local area network (WLAN), is described. Unlike other cooperative MAC designs, there is no need to predetermine, before packet transmission, which stations will serve as relays. Instead, the MAC layer protocol opportunistically recruits relay stations on the fly. Network capacity and delay performance is much better than legacy IEEE 802.11g network, and even cooperative forwarding using one relay station. Avoiding the need to collect the station-to-station channel statistics considerably reduces overhead otherwise required for channel measurement and signaling.
    • 描述了可以部署在IEEE 802.11无线局域网(WLAN)中的用于随机分布时空编码(R-DSTC)的分布式和机会性介质访问控制(MAC)层协议。 与其他合作MAC设计不同,在分组传输之前,不需要预先确定哪些站将用作中继站。 相反,MAC层协议机会地即时招募中继站。 网络容量和延迟性能远优于传统IEEE 802.11g网络,甚至使用一个中继站进行协作转发。 避免收集站对站信道统计的需要大大减少了信道测量和信令所需的开销。