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    • 13. 发明授权
    • Method and apparatus for identifying network connectivity changes in dynamic networks
    • 用于识别动态网络中网络连接变化的方法和装置
    • US08509098B2
    • 2013-08-13
    • US11414126
    • 2006-04-28
    • Gary W. AtkinsonXiang LiuRamesh NagarajanShyam P. Parekh
    • Gary W. AtkinsonXiang LiuRamesh NagarajanShyam P. Parekh
    • G01R31/08H04W4/00
    • H04W40/24H04L45/02H04W84/18
    • The invention comprises a method and apparatus for determining a network connectivity in a network having a plurality of nodes. In particular, one embodiment of the method includes generating a candidate link for each of a plurality of node pairs, predicting a performance of each candidate link by evaluating an expected impact of at least one condition on each candidate link, and determining the network topology using the predicted performances of the candidate links. The performance of each candidate link may be predicted by identifying at least one condition, determining the expected impact of the at least one condition on the candidate link, and predicting the performance of the candidate link by adjusting an expected performance of the candidate link using the expected impact of the at least one condition on the candidate link.
    • 本发明包括一种用于确定具有多个节点的网络中的网络连接性的方法和装置。 特别地,该方法的一个实施例包括为多个节点对中的每一个生成候选链路,通过评估至少一个条件对每个候选链路的预期影响来预测每个候选链路的性能,以及使用 候选人链接的预测表现。 每个候选链路的性能可以通过识别至少一个条件,确定至少一个条件对候选链路的预期影响以及通过使用该候选链路调整候选链路的预期性能来预测候选链路的性能来预测 至少一个条件对候选链接的预期影响。
    • 15. 发明授权
    • Blower adapter and blower using the same
    • 鼓风机适配器和鼓风机使用相同
    • US08475146B2
    • 2013-07-02
    • US12726529
    • 2010-03-18
    • Xiang Liu
    • Xiang Liu
    • F04D29/42F04D25/06F16L55/00
    • F04D29/4226
    • An adapter, containing at least an inlet portion, an outlet portion, and a transition portion. The inlet portion, the outlet portion and the transition portion are integrally formed, and the transition portion bends upwards whereby staggering the inlet portion and the outlet portion. The adapter is easy to assemble and disassemble, which makes it easy to connect the blower to an external equipment. Moreover, the adapter is integrally formed, features simple structure and is convenient to cast, all of which reduces time for production and mold opening, and thus decreases production cost.
    • 一个适配器,至少包含入口部分,出口部分和过渡部分。 入口部分,出口部分和过渡部分一体地形成,并且过渡部分向上弯曲,从而使入口部分和出口部分交错。 适配器易于组装和拆卸,这样可以方便地将鼓风机连接到外部设备。 另外,适配器整体形成,结构简单,铸造方便,所有这些都减少了生产和开模的时间,从而降低了生产成本。
    • 16. 发明申请
    • COMMUNICATION THROUGH PRE-DISPERSION-COMPENSATED PHASE-CONJUGATED OPTICAL VARIANTS
    • 通过预分散补偿的相位光学变量进行通信
    • US20130071119A1
    • 2013-03-21
    • US13601236
    • 2012-08-31
    • Xiang LiuPeter J. WinzerAndrew Roman ChraplyvyRobert William Tkach
    • Xiang LiuPeter J. WinzerAndrew Roman ChraplyvyRobert William Tkach
    • H04B10/18H04J14/06
    • H04B10/516H04B10/25137
    • An apparatus comprises an optical transmitter that comprises a processor and at least one optical modulator. The processor is configured to generate electronic representations of at least two pre-dispersion-compensated phase-conjugated optical variants carrying a same modulated payload data for transmission. The at least one optical modulator is configured to modulate the electronic representations, wherein an amount of dispersion induced on the pre-dispersion-compensated phase-conjugated optical variants depends on an accumulated dispersion (AD) of a transmission link through which the pre-dispersion-compensated phase-conjugated optical variants are to be transmitted. The amount of dispersion induced on the phase-conjugated optical variants may be approximately −AD/2, where AD is the accumulated dispersion of the transmission link. The pre-dispersion-compensated phase-conjugated optical variants are different from one another in one or more dimensions such as the polarization of light, the time of transmission, the spatial localization, the optical carrier wavelength, or the subcarrier frequency during transmission.
    • 一种装置包括光发射机,其包括处理器和至少一个光调制器。 处理器被配置为生成携带相同调制有效载荷数据以进行传输的至少两个预色散补偿相位共轭光学变型的电子表示。 所述至少一个光调制器被配置为调制电子表示,其中在预色散补偿的相位共轭光学变体上感应的色散量取决于传输链路的累积色散(AD),通过该传播链路的预分散 补偿的相位共轭光学变体将被传输。 在相位共轭光学变体上引起的色散量可以近似为-AD / 2,其中AD是传输链路的累积色散。 预色散补偿相位共轭光学变体在一个或多个维度上彼此不同,例如光的偏振,透射时间,空间定位,光载波波长或透射期间的副载波频率。
    • 20. 发明申请
    • INVASIVE CARDIAC VALVE
    • 入侵心脏瓣膜
    • US20120316642A1
    • 2012-12-13
    • US13519930
    • 2010-12-30
    • Qifeng YuXiang LiuYunlei WangChengyun YueQiyi Luo
    • Qifeng YuXiang LiuYunlei WangChengyun YueQiyi Luo
    • A61F2/24
    • A61F2/2412A61F2/2415A61F2/2418A61F2002/3021A61F2002/9528A61F2002/9534A61F2220/0075A61F2230/0021A61F2230/0023A61F2230/0054A61F2230/0067A61F2230/008A61F2250/0039
    • An invasive cardiac valve comprises a tubular stent (1) and a valve (2). One end of the tubular stent (1) is of a frusto-conical structure, the other end is wide open, and the diameter of the open end is greater than the diameter of the frusto-conical end. The valve (2) is attached to the frusto-conical end of the tubular stent (1); and a delivery and retrieval hole (4) of the cardiac valve is provided at the top of the open end of the tubular stent (1). Because the diameter of the open end is greater than the diameter of the frusto-conical end, the cardiac valve can be effectively fixed in a position of aortic annulus to prevent the cardiac valve displacement caused by the impact of the blood flow. Because the valve (2) is attached to the frusto-conical end of the tubular stent (1), the valve (2) can totally avoid the left and right coronary ostia and does not affect the haemodynamics of the coronary artery. Because a delivery and retrieval hole (4) of the cardiac valve is provided at the top of the open end of the tubular stent (1), the cardiac valve can be retrieved and reset at any time by handle control if it is found to be placed in an improper position during the release process.
    • 侵入式心脏瓣膜包括管状支架(1)和阀(2)。 管状支架(1)的一端具有截头圆锥形结构,另一端敞开,开口端的直径大于截头圆锥端的直径。 阀(2)连接到管状支架(1)的截头圆锥端; 并且所述心脏瓣膜的输送和取出孔(4)设置在所述管状支架(1)的开口端的顶部。 因为开口端的直径大于截头圆锥端的直径,所以心脏瓣膜可以有效地固定在主动脉瓣环的位置,以防止由血液流动引起的心脏瓣膜位移。 因为阀(2)附接到管状支架(1)的截头圆锥端,所以阀(2)可以完全避免左冠状动脉和右冠状动脉,并且不影响冠状动脉的血流动力学。 因为心脏瓣膜的输送和取出孔(4)设置在管状支架(1)的开口端的顶部,所以如果发现心脏瓣膜被发现是可以通过手柄控制随时取出和重新设置心脏瓣膜 在释放过程中处于不正确的位置。