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    • 42. 发明授权
    • Optical interconnect systems and methods
    • 光互连系统和方法
    • US08903204B2
    • 2014-12-02
    • US13082547
    • 2011-04-08
    • Rohit NairTian GuMichael W. Haney
    • Rohit NairTian GuMichael W. Haney
    • G02B6/00G02F1/035G02B6/43G02B6/12G02B6/42
    • G02B6/43G02B6/4214G02B2006/12173
    • Optical interconnect systems and methods are disclosed. An optical interconnect system includes a substrate, an optical waveguide, and first and second modulators. The optical waveguide has a first waveguide portion extending to a first coupling structure, a second waveguide portion extending from the first coupling structure to a second coupling structure, and a third waveguide portion extending from the second coupling structure. The first modulator is positioned adjacent the first coupling structure, and the second modulator is positioned adjacent the second coupling structure. The optical interconnect method includes modulating light with a first modulator to produce one-time modulated light, and modulating the one-time modulated light with a second modulator to produce two-time modulated light.
    • 公开了光互连系统和方法。 光学互连系统包括基板,光波导以及第一和第二调制器。 光波导具有延伸到第一耦合结构的第一波导部分,从第一耦合结构延伸到第二耦合结构的第二波导部分和从第二耦合结构延伸的第三波导部分。 第一调制器位于第一耦合结构附近,并且第二调制器位于第二耦合结构附近。 光学互连方法包括用第一调制器调制光以产生一次调制光,并用第二调制器调制一次调制光以产生两次调制光。
    • 43. 发明申请
    • COMPOSITIONS AND METHODS FOR INCREASING BIOMASS, IRON CONCENTRATION, AND TOLERANCE TO PATHOGENS IN PLANTS
    • 增加生物量,铁浓度和耐受植物病原体的组合物和方法
    • US20140315715A1
    • 2014-10-23
    • US14252346
    • 2014-04-14
    • UNIVERSITY OF DELAWARE
    • Harsh BaisDarla Janine SherrierVenkatachalam Lakshmanan
    • A01N63/02
    • A01N63/02A01N63/00A01N25/00A01N2300/00
    • Methods for producing greater biomass in a plant, increasing the drought tolerance of a plant, producing a decreased lignin concentration in a plant, producing a greater iron concentration in a plant, or inhibiting fungal infection in a plant comprise administering Bacillus subtilis FB17 to the plant, the seed of the plant, or soil surrounding the plant or the seed in an amount effective to produce greater biomass, increase the drought tolerance, produce a decreased lignin concentration, produce a greater iron concentration, or inhibit fungal infection in the plant compared to an untreated plant, respectively. Agricultural carriers and seed coatings comprising Bacillus subtilis FB17 are provided. The biomass of a plant which has been administered Bacillus subtilis FB17 can be converted to a biofuel or can be used as a food crop or in other uses.
    • 在植物中产生更大生物量的方法,增加植物的耐旱性,在植物中产生木质素浓度降低,在植物中产生更大的铁浓度或抑制植物中的真菌感染,包括向植物施用枯草芽孢杆菌FB17 植物种子或植物周围的土壤或有效产生更大生物量的量的种子可增加干旱耐受性,产生较低的木质素浓度,产生较高的铁浓度或抑制植物中的真菌感染,与 一个未经处理的植物。 提供包含枯草芽孢杆菌FB17的农业载体和种子包衣。 已经施用枯草芽孢杆菌FB17的植物的生物量可以转化为生物燃料,或者可以用作食物作物或其他用途。
    • 45. 发明授权
    • Method for detection of a plume of a first fluid within a second fluid
    • 用于检测第二流体内的第一流体羽流的方法
    • US08760970B2
    • 2014-06-24
    • US13273852
    • 2011-10-14
    • Mohsen BadieyBoris G. KatsnelsonJames F. Lynch
    • Mohsen BadieyBoris G. KatsnelsonJames F. Lynch
    • G01S15/06
    • G01S15/003G01N29/032G01N2291/0222G01N2291/103G01S15/58
    • Methods and systems for detecting a plume of a first fluid in a second fluid using an acoustic wave are provided, where the first fluid has a different acoustic index of refraction than the second fluid. A horizontal array having a plurality of receiving elements receives an acoustic signal propagated through the second fluid and at least one refracted signal refracted by the first fluid. The acoustic signal and the at least one refracted signal form a received signal. An interference pattern is detected from the received signal over the plurality of receiving elements. The interference pattern is due to interference between the acoustic signal and the at least one refracted signal. A horizontal angle of refraction is determined between the acoustic signal and the at least one refracted signal from the interference pattern. The horizontal angle of refraction is indicative of a physical characteristic of the first fluid.
    • 提供了使用声波来检测第二流体中的第一流体的羽流的方法和系统,其中第一流体具有与第二流体不同的声学折射率。 具有多个接收元件的水平阵列接收通过第二流体传播的声信号和由第一流体折射的至少一个折射信号。 声信号和至少一个折射信号形成接收信号。 从多个接收元件的接收信号中检测出干扰图案。 干涉图案是由于声信号和至少一个折射信号之间的干扰。 在声学信号和来自干涉图案的至少一个折射信号之间确定水平折射角。 水平折射角表示第一流体的物理特性。
    • 46. 发明申请
    • UNDERWATER ACOUSTIC MULTIPLE-INPUT/MULTIPLE-OUTPUT (MIMO) COMMUNICATION SYSTEMS AND METHODS
    • 水下多声道多输入/多输出(MIMO)通信系统和方法
    • US20140098841A2
    • 2014-04-10
    • US13642704
    • 2011-06-07
    • Aijun SongMohsen Badiey
    • Aijun SongMohsen Badiey
    • H04B15/00H04B13/02
    • H04B15/00H04B11/00H04B13/02
    • Methods and systems for acoustic multiple-input/multiple-output (MIMO) communication in an underwater environment. The method includes: a) receiving signals at multiple receivers representing transmitted signals from multiple transmitters, b) estimating channel responses between the multiple receivers and the multiple transmitters, c) performing an initial demodulation process on the received signals using the estimated channel responses to remove inter-symbol interference (ISI), and d) performing at least one subsequent demodulation process on the received signals. The subsequent demodulation process: i) removes co-channel interference (CoI) using the estimated channel responses and demodulated signals from an immediately preceding demodulation process to form interference cancelled signals and ii) removes ISI from the interference cancelled signals. In the initial and subsequent demodulation processes, ISI removal includes a time reversal combining process followed by a single-channel decision feedback equalization (DFE) process.
    • 在水下环境下进行声学多输入/多输出(MIMO)通信的方法和系统。 该方法包括:a)在多个接收机处接收表示来自多个发射机的发射信号的信号,b)估计多个接收机与多个发射机之间的信道响应,c)使用所估计的信道响应来对接收到的信号执行初始解调处理以去除 符号间干扰(ISI),以及d)对所接收的信号执行至少一个后续解调处理。 随后的解调过程:i)使用估计的信道响应和来自紧接在前的解调过程的解调信号去除同信道干扰(CoI),以形成干扰消除信号,以及ii)从干扰消除信号中去除ISI。 在初始和随后的解调过程中,ISI去除包括后续单信道判决反馈均衡(DFE)过程的时间反转组合过程。
    • 47. 发明申请
    • Process and System for Generating a Specification for a Customized Device, and Device Made Thereby
    • 用于生成定制设备的规范的过程和系统,以及由此制造的设备
    • US20140067107A1
    • 2014-03-06
    • US14012620
    • 2013-08-28
    • Steven J. StanhopeElisa Schrank
    • Steven J. StanhopeElisa Schrank
    • G06F17/50
    • G06F17/50B33Y50/00G01B5/008G06T19/00G06T2210/41
    • A process and system for generating a specification for customized devices, such as rehabilitation or assistive devices, including prostheses and orthoses, or sports padding or equipment. A digital model, which is fully parameterized at least for characterizing clinical shape characteristics and functional characteristics of the device, is populated with a plurality of design parameter values and 3-dimensional coordinates of captured and calculated virtual landmarks to construct a customized model corresponding to the specification. The customized device may be manufactured based upon the specification. A system connected to a computer aided manufacturing system may generate instructions for automatically fabricating the device. In embodiments with standardized design parameter values, the customized model may be constructed without involving a human operator.
    • 用于生成定制设备的规范的过程和系统,例如康复或辅助设备,包括假体和矫形器,或运动衬垫或设备。 至少用于表征装置的临床形状特征和功能特征的完全参数化的数字模型被填充有捕获和计算的虚拟地标的多个设计参数值和3维坐标,以构建对应于 规范。 可以基于规格制造定制装置。 连接到计算机辅助制造系统的系统可以产生用于自动制造装置的指令。 在具有标准化设计参数值的实施例中,可以构造定制模型而不涉及人类操作者。