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    • 2. 发明申请
    • Accessing Hardware Devices Using Web Server Abstractions
    • 使用Web服务器抽象访问硬件设备
    • US20130060905A1
    • 2013-03-07
    • US13224337
    • 2011-09-02
    • James MickensDavid ChuLi ZhuangKaisen Lin
    • James MickensDavid ChuLi ZhuangKaisen Lin
    • G06F15/16
    • H04L67/025H04L63/08H04L63/20H04L69/08
    • In the new architecture, a client that desires access to a piece of hardware sends HTTP requests to a device server. The server receives a HTTP requests, accesses a device on behalf of the client, and send the device's response back to the client in the form of an HTTP response. This architecture has three primary advantages. First, it offers a clean interface for clients where all devices are accessed as if they are web servers. Second, it helps make devices more secure whereby clients can be prevented from accessing hardware directly, and all device access is forced through the narrow HTTP access protocol and checked for compliance with a desired security policy. Third, since HTTP allows local and remote servers to be contacted, the proposed architecture makes it easy for clients to communicate with devices that are not physically co-resident with the client but which are accessible via a network connection.
    • 在新架构中,希望访问硬件的客户端向设备服务器发送HTTP请求。 服务器接收HTTP请求,代表客户端访问设备,并以HTTP响应的形式将设备的响应发送回客户端。 这种架构有三个主要优点。 首先,它为所有设备的访问提供了一个干净的界面,就像它们是Web服务器一样。 第二,它有助于使设备更安全,从而可以防止客户端直接访问硬件,并且强制所有设备访问通过窄HTTP访问协议,并检查是否符合所需的安全策略。 第三,由于HTTP允许联系本地和远程服务器,因此所提出的架构使客户端能够轻松地与不与客户端物理共驻的设备进行通信,但可通过网络连接进行访问。
    • 6. 发明申请
    • Phase digitizer for signals in imperfect quadrature
    • 相位数字转换器,用于不完全正交的信号
    • US20050062624A1
    • 2005-03-24
    • US10668851
    • 2003-09-23
    • David ChuCarol CourvilleLee Kalem
    • David ChuCarol CourvilleLee Kalem
    • G01B9/02G01D5/243G01D5/244H03M1/30H03M1/48
    • H03M1/303
    • A method of digitizing first and second signals in imperfect quadrature for obtaining characteristic parameters of the first signal comprises providing a first signal, the first signal comprising an inphase quasi-sinusoidal analog signal. The method comprises providing a second signal, the second signal comprising a quadrature signal. The method comprises digitizing the first signal at a sampling rate, thereby generating a first plurality of sets of digital signal waveform samples and digitizing the second signal at the sampling rate, thereby generating a second plurality of sets of digital signal waveform samples. The method comprises digitally processing successive first and second sets of digital signal waveform samples to generate continually updated digital characteristic parameters representing a characteristic behavior of the first signal.
    • 数字化不正确正交中的第一和第二信号以获得第一信号的特性参数的方法包括提供第一信号,第一信号包括同相准正弦模拟信号。 所述方法包括提供第二信号,所述第二信号包括正交信号。 该方法包括以采样率对第一信号进行数字化,从而产生第一多组数字信号波形样本,并以采样率对第二信号进行数字化,从而产生第二组多组数字信号波形样本。 该方法包括数字处理连续的第一和第二组数字信号波形样本以产生表示第一信号的特征行为的不断更新的数字特征参数。
    • 10. 发明申请
    • CONTEXT-BASED DEVICE ACTION PREDICTION
    • 基于语境的设备行为预测
    • US20130173513A1
    • 2013-07-04
    • US13340702
    • 2011-12-30
    • David ChuAman KansalJie LiuTingxin Yan
    • David ChuAman KansalJie LiuTingxin Yan
    • G06F15/18G06F9/46
    • G06F9/4443G06F9/445G06F9/451G06N99/005
    • The described implementations relate to automatically performing device actions. One implementation can obtain a contextual value of a contextor. The implementation can decide, using a decision engine, whether to perform an action on a computing device based on the contextual value. In an instance when the decision engine decides that the action is to be performed, the implementation can perform the action on the computing device. The implementation can also update the decision engine using feedback related to the action. As a specific example, the action can be prelaunching an application before a user has requested to execute the application. Prelaunching the application can reduce application latency relative to waiting for the user to request to execute the application before launching the application.
    • 所描述的实现涉及自动执行设备动作。 一个实现可以获得一个上下文的上下文值。 该实现可以使用决策引擎来决定是否基于上下文值对计算设备执行动作。 在决策引擎决定要执行动作的情况下,实现可以对计算设备执行动作。 实施还可以使用与该动作相关的反馈更新决策引擎。 作为具体示例,该操作可以在用户请求执行应用程序之前预先启动应用程序。 预启动应用程序可以相对于等待用户在启动应用程序之前请求执行应用程序来减少应用程序延迟。