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    • 72. 发明授权
    • Systems and methods for auto-adaptive control over converged results for multi-dimensional optimization
    • 用于多维优化的融合结果的自适应控制的系统和方法
    • US08862627B2
    • 2014-10-14
    • US13194424
    • 2011-07-29
    • Matthew Phillip FerringerTimothy Guy Thompson
    • Matthew Phillip FerringerTimothy Guy Thompson
    • G06N3/12G06F17/30
    • G06N3/126G06F17/30286
    • Systems and methods may include identifying an input population of parent epsilon chromosome data structures; combining genes of each selected pair of parent epsilon chromosome data structures according to at least one evolutionary operator to generate a plurality of child epsilon chromosome data structures, each child epsilon chromosome data structure providing one or more genes each having a respective candidate epsilon value representing a respective step size or spacing for the respective problem objective; and evaluating each of the plurality of child epsilon chromosome data structures according to one or more epsilon objective functions to generate respective epsilon objective function values for each child epsilon chromosome data structure, where each epsilon objective function is associated with a respective goal associated with at least one a priori criterion, where each respective epsilon objective function value indicates an extent to which each respective goal can be achieved.
    • 系统和方法可以包括识别亲本染色体数据结构的输入群体; 根据至少一个进化算子组合每个所选择的一对亲本染色体数据结构的基因以产生多个儿童epsilon染色体数据结构,每个儿童epsilon染色体数据结构提供一个或多个基因,每个基因各自具有表示一个 相应问题目标的相应步长或间距; 以及根据一个或多个ε目标函数评估所述多个儿童epsilon染色体数据结构中的每一个,以针对每个儿童epsilon染色体数据结构生成相应的ε目标函数值,其中每个epsilon目标函数与至少相关联的目标函数相关联 一个先验标准,其中每个相应的ε目标函数值指示可以实现每个相应目标的程度。
    • 74. 发明申请
    • SYSTEMS AND METHODS FOR PRIORITIZING FUNDING OF PROJECTS
    • 用于优化项目资金的系统和方法
    • US20140278695A1
    • 2014-09-18
    • US13837782
    • 2013-03-15
    • THE AEROSPACE CORPORATION
    • Patrick L. SmithMatthew Phillip Ferringer
    • G06Q10/06
    • G06Q10/06313
    • Systems and methods for providing a prioritization of the focus and allocation of available resources and/or funding for due diligence analyses of a variety of candidate projects competing for limited funding are disclosed. Various methods may also determine a confidence level metrics associated with the information and/or estimates associated with the candidate projects. Evolutionary algorithms may be applied to perform multi-objective optimization of objectives based, at least in part, on currently available information and/or estimates associated with the candidate projects. A priority score, for the purpose of allocating due diligence attention and resources to increase confidence levels in assumptions associated with candidate projects, may be determined for a particular project based, at least in part, on the current confidence level associated with that particular project and the percentage of non-dominated projects within which the particular project is included. The optimization may be performed multiple times, such as once for every stakeholder that may have provided information and/or estimates associated with the candidate projects, to identify a plurality of non-dominated solutions to the optimization problem.
    • 披露了为有限资金竞争的各种候选项目提供优先重点分配现有资源和/或资金进行尽职调查分析的系统和方法。 各种方法还可以确定与候选项目相关联的信息和/或估计相关联的置信水平度量。 可以至少部分地基于与候选项目相关联的当前可用信息和/或估计来应用进化算法来执行目标的多目标优化。 为了分配尽职调查注意力和资源以提高与候选项目相关的假设的置信水平,优先分数可以基于至少部分地基于与该特定项目相关联的当前置信度来确定特定项目, 特定项目所在的非主导项目的百分比。 可以多次执行优化,例如对于可能提供与候选项目相关联的信息和/或估计的每个利益相关者,一次,以识别优化问题的多个非主导解决方案。
    • 77. 发明授权
    • Increased capacity communication links with spectrum sharing
    • 增加与频谱共享的通信链路
    • US08767845B2
    • 2014-07-01
    • US12660617
    • 2010-03-02
    • Rajendra Kumar
    • Rajendra Kumar
    • H04K1/10H04L27/28
    • H04B1/0483
    • Various embodiments are directed to systems and methods for processing signals comprising a first component and a second component. A bandwidth of the first component may be centered at a center frequency. A bandwidth of the second component may be offset from the center frequency by an offset frequency such that at least a portion of the bandwidth of the second component overlaps a skirt of the first component. In various embodiments, a transmitter may split a single signal to generate the first and second components, shift the frequency of the second component, recombine and transmit the two components. Also, in various embodiments, a receiver may receive the signal and derive the first and second components by correcting for cross-interference.
    • 各种实施例涉及用于处理包括第一部件和第二部件的信号的系统和方法。 第一分量的带宽可以以中心频率为中心。 第二分量的带宽可以偏离中心频率偏移频率,使得第二分量的带宽的至少一部分与第一分量的边缘重叠。 在各种实施例中,发射机可以分离单个信号以产生第一和第二分量,移动第二分量的频率,重组并传输两个分量。 而且,在各种实施例中,接收机可以接收信号并且通过校正交叉干扰来导出第一和第二分量。
    • 78. 发明申请
    • SYSTEMS AND METHODS FOR REDUCING NARROW BANDWIDTH INTERFERENCE CONTAINED IN BROAD BANDWIDTH SIGNALS
    • 用于减少宽带带宽信号中包含的窄带干扰的系统和方法
    • US20140133328A1
    • 2014-05-15
    • US14010390
    • 2013-08-26
    • THE AEROSPACE CORPORATION
    • Robert Bernhard DybdalChristopher Joseph ClarkSamuel Joseph CurryLan Xu
    • H04B15/00
    • H04B1/10H04B1/1036H04B15/00H04J11/0066
    • Under one aspect of the present invention, a system for processing a group of signals and interference includes (a) an analog-to-digital (A/D) converter for digitizing the group of signals and the interference; (b) a Fourier transform circuit for obtaining a Fourier transform of the digitized group of signals and the interference and to provide as output spectral bins, at least one of which contains the interference; (c) a power analysis circuit for comparing the collective power level of the spectral bins to a predetermined threshold, and if the collective power level exceeds the predetermined threshold, and for excising at least one bin that contains the interference; and (d) an inverse Fourier transform circuit for obtaining an inverse Fourier transform of the remaining spectral bins and outputting a digitized group of signals less the interference in any excised spectral bin.
    • 在本发明的一个方面,用于处理一组信号和干扰的系统包括:(a)用于数字化信号组和干扰的模数(A / D)转换器; (b)傅立叶变换电路,用于获得所述数字化信号组和所述干扰的傅里叶变换,并提供其中至少一个包含所述干扰的输出频谱箱; (c)功率分析电路,用于将频谱仓的集体功率水平与预定阈值进行比较,并且如果所述集体功率水平超过所述预定阈值,并且用于对包含所述干扰的至少一个仓进行切除; 和(d)逆傅里叶变换电路,用于获得剩余频谱箱的傅立叶逆变换,并输出少量信号的数字化信号组,以减少任何切除的频谱仓中的干扰。
    • 79. 发明授权
    • Systems and methods for use in generating pulsed terahertz radiation
    • 用于产生脉冲太赫兹辐射的系统和方法
    • US08716685B1
    • 2014-05-06
    • US13728688
    • 2012-12-27
    • The Aerospace Corporation
    • Adam Wayne BushmakerWilliam T. Lotshaw
    • H01S5/00H01S3/00
    • G02B6/12G01N21/3586
    • A terahertz generating assembly generally includes a light emitting device that is configured to generate at least one pulsed light beam. A first dispersion member is positioned proximate to the light emitting device, wherein the first dispersion member is configured to facilitate a temporal dispersion of the light beam. A second dispersion member is positioned proximate to the first dispersion member and to the light emitting device, wherein the second dispersion member is configured to facilitate a spatial dispersion of the light beam. A lens is positioned proximate to each of the first and second dispersion members, wherein the lens is configured to focus the temporal and spatial dispersions to produce at least one moving spot of light. At least one waveguide is positioned proximate to the lens, wherein the waveguide is configured to apply a biased voltage to the spot of light to generate pulsed terahertz radiation.
    • 太赫兹发生组件通常包括被配置为产生至少一个脉冲光束的发光器件。 第一分散构件定位成靠近发光器件,其中第一分散构件被配置为有助于光束的时间色散。 第二分散构件定位成靠近第一分散构件和发光装置,其中第二分散构件被配置为有助于光束的空间色散。 透镜被定位成靠近每个第一和第二分散构件,其中透镜被配置为聚焦时间和空间色散以产生至少一个移动光点。 至少一个波导位于透镜附近,其中波导被配置为将偏置电压施加到光点以产生脉冲太赫兹辐射。
    • 80. 发明申请
    • MICROFLUIDIC DEVICE FOR INDUCING SEPARATIONS BY FREEZING AND ASSOCIATED METHOD
    • 用于通过冷冻诱导分离的微流体装置和相关方法
    • US20140102116A1
    • 2014-04-17
    • US14140303
    • 2013-12-24
    • The Aerospace Corporation
    • Richard P. WELLE
    • B01D17/00
    • B01D17/00B01D9/004B01D9/04B01L3/502769B01L2200/0631B01L2300/0887B01L2300/1822B01L2300/1827B01L2400/0677Y10T137/2196Y10T436/25375
    • A microfluidic device is provided for inducing the separation of constituent elements from a microfluidic sample by introducing phase changes in the microfluidic sample while contained in a microfluidic channel in the device. At least a portion of the microfluidic sample is frozen to cause fractional exclusion of the constituent element from the frozen portion of the microfluidic sample. Different portions of the microfluidic sample may be frozen in different sectors and at different times in order to cause movement in a desired direction of the separated constituent element. Portions of the microfluidic sample may be frozen in a sequential order of adjacent sectors within the microfluidic channel in order to cause sequential movement of the excluded constituent element toward one portion of the microfluidic channel. The frozen portion of the microfluidic sample is then thawed, wherein the separated constituent element remains substantially separated from the thawed, purified microfluidic sample.
    • 提供了一种微流体装置,用于通过在微流体样品中引入相变而将微量流体样品中的组分元素分离,同时包含在装置的微流体通道中。 将微流体样品的至少一部分冷冻以引起构成元件从微流体样品的冷冻部分的分级排除。 微流体样品的不同部分可以在不同的扇区中被冷冻,并且在不同的时间被冷冻以引起在所分离的构成元件的期望方向上的移动。 微流体样品的部分可以以微流体通道内的相邻扇区的顺序冷冻,以便排除构成元件朝着微流体通道的一部分顺序移动。 然后将微流体样品的冷冻部分解冻,其中分离的构成元件基本上与解冻的纯化的微流体样品分离。