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    • 21. 发明申请
    • METHODS FOR THERMAL MANAGEMENT OF THREE-DIMENSIONAL INTEGRATED CIRCUITS
    • 三维集成电路热管理方法
    • US20080281476A1
    • 2008-11-13
    • US11747279
    • 2007-05-11
    • Pradip BoseAlper BuyuktosunogluEren Kursun
    • Pradip BoseAlper BuyuktosunogluEren Kursun
    • G05D23/20G06F1/00
    • G05D23/1932
    • A method of dynamic thermal management in a multi-dimensional integrated circuit or device is provided. The method includes monitoring on-chip temperatures, power dissipation, and performance of device layers. The method includes comparing on-chip temperatures to thermal thresholds, on-chip power dissipation to power thresholds and on-chip performance to performance thresholds. Also, the method includes analyzing interactions between temperatures, power, and performance of different device layers within the multi-dimensional integrated circuits. The method includes activating layer-specific thermal and power management within performance constraints on one or more device layers through actuators in the corresponding device layers, depending on the severity of heating.
    • 提供了一种多维集成电路或器件中的动态热管理方法。 该方法包括监测片上温度,功耗和器件层的性能。 该方法包括将片上温度与热阈值进行比较,将片上功耗降至功率阈值,并将片上性能与性能阈值进行比较。 此外,该方法包括分析多维集成电路内不同器件层的温度,功率和性能之间的相互作用。 该方法包括根据加热的严重程度,通过相应设备层中的致动器在一个或多个设备层上的性能约束内激活层特定的热和功率管理。
    • 24. 发明申请
    • Systems And Methods For High Fidelity Multi-Modal Out-Of-Band Biometric Authentication
    • 用于高保真多模态带外生物识别的系统和方法
    • US20140333413A1
    • 2014-11-13
    • US13908618
    • 2013-06-03
    • Eren Kursun
    • Eren Kursun
    • G06K9/00
    • G06K9/00892
    • Systems and methods for high fidelity multi-modal out-of-band biometric authentication are disclosed. According to one embodiment, a method for multi-mode biometric authentication may include (1) receiving, at a computer application executed by an electronic device, a first input from a first input device on the electronic device; (2) receiving, at the computer application, a second data from a second input device on the electronic device; (3) receiving, at the computer application, a third input from a third input device on the electronic device; and (4) communicating, by the computer application and to a server, the first input, the second input, and the third input. The first input, second input and third input may be received within a predetermined time period, such as five seconds.
    • 公开了用于高保真多模式带外生物认证的系统和方法。 根据一个实施例,一种用于多模式生物认证的方法可以包括(1)在由电子设备执行的计算机应用处接收来自电子设备上的第一输入设备的第一输入; (2)在计算机应用中从电子设备上的第二输入设备接收第二数据; (3)在计算机应用中从电子设备上的第三输入设备接收第三输入; 和(4)由计算机应用程序和服务器将第一输入,第二输入和第三输入进行通信。 第一输入,第二输入和第三输入可以在预定时间段内接收,例如五秒。
    • 26. 发明申请
    • EFFECT TRANSLATION AND ASSESSMENT AMONG MICROARCHITECTURE COMPONENTS
    • 微观组成部分的有效翻译和评估
    • US20130254526A1
    • 2013-09-26
    • US13429587
    • 2012-03-26
    • Bulent AbaliMichael S. FloydEren Kursun
    • Bulent AbaliMichael S. FloydEren Kursun
    • G06F9/06
    • G06F11/3024G06F11/3058G06F11/3062G06F11/3409G06F11/3433G06F11/348G06F2209/501G06F2209/508
    • Awareness of the relationships among the operating parameters for an individual core and among cores allows dynamic and intelligent management of the multi-core system. The relationships among operating parameters and cores, which can be somewhat opaque, are established with design-time simulations, and adapted with run time data collected from operation of the multi-core system. The relationships are expressed with functions that translate between operating parameters, between different cores, and between operating parameters of different cores. These functions are embodied in circuitry built into the multi-core system. The circuitry will be referred to hereinafter as a translator unit. The translator unit traverses the complex relational dependencies among multiple operating parameters and multiple cores, and determines an outcome with respect to one or more constraints corresponding to those operating parameters and cores.
    • 意识到单个核心和核心的运行参数之间的关系允许多核系统的动态和智能管理。 可以通过设计时模拟建立操作参数和核心之间的关系,这些关系可能有些不透明,并且适用于从多核系统运行收集的运行时数据。 这些关系用转换操作参数,不同内核之间以及不同内核的操作参数之间的函数表示。 这些功能体现在内置于多核系统中的电路中。 电路在下文中将被称为翻译单元。 翻译器单元遍历多个操作参数和多个核心之间的复杂关系依赖关系,并且确定与这些操作参数和核心相对应的一个或多个约束的结果。
    • 29. 发明授权
    • Task assignment on heterogeneous three-dimensional/stacked microarchitectures
    • 异构三维/堆叠微架构上的任务分配
    • US08424006B2
    • 2013-04-16
    • US12793231
    • 2010-06-03
    • Hans M. JacobsonEren Kursun
    • Hans M. JacobsonEren Kursun
    • G06F9/46
    • G06F1/206G06F1/3203G06F9/5094Y02D10/22
    • A method of enhancing performance of a three-dimensional microarchitecture includes determining a computational demand for performing a task, selecting an optimization criteria for the task, identifying at least one computational resource of the microarchitecture configured to meet the computational demand for performing the task, and calculating an evaluation criteria for the at least one computational resource based on the computational demand for performing the task. The evaluation criteria defines an ability of the computational resource to meet the optimization criteria. The method also includes assigning the task to the computational resource based on the evaluation criteria of the computational resource in order to proactively avoid creating a hot spot on the three-dimensional microarchitecture.
    • 提高三维微体系结构的性能的方法包括确定执行任务的计算需求,选择任务的优化标准,识别配置为满足执行任务的计算需求的微体系结构的至少一个计算资源,以及 基于用于执行所述任务的计算需求来计算所述至少一个计算资源的评估标准。 评估标准定义了计算资源满足优化标准的能力。 该方法还包括基于计算资源的评估标准将任务分配给计算资源,以便主动避免在三维微体系结构上产生热点。
    • 30. 发明申请
    • TASK ASSIGNMENT ON HETEROGENEOUS THREE-DIMENSIONAL/STACKED MICROARCHITECTURES
    • 异构三维/堆叠微晶技术的任务分配
    • US20110302582A1
    • 2011-12-08
    • US12793231
    • 2010-06-03
    • Hans M. JacobsonEren Kursun
    • Hans M. JacobsonEren Kursun
    • G06F9/46
    • G06F1/206G06F1/3203G06F9/5094Y02D10/22
    • A method of enhancing performance of a three-dimensional microarchitecture includes determining a computational demand for performing a task, selecting an optimization criteria for the task, identifying at least one computational resource of the microarchitecture configured to meet the computational demand for performing the task, and calculating an evaluation criteria for the at least one computational resource based on the computational demand for performing the task. The evaluation criteria defines an ability of the computational resource to meet the optimization criteria. The method also includes assigning the task to the computational resource based on the evaluation criteria of the computational resource in order to proactively avoid creating a hot spot on the three-dimensional microarchitecture.
    • 提高三维微体系结构的性能的方法包括确定执行任务的计算需求,选择任务的优化标准,识别配置为满足执行任务的计算需求的微体系结构的至少一个计算资源,以及 基于用于执行所述任务的计算需求来计算所述至少一个计算资源的评估标准。 评估标准定义了计算资源满足优化标准的能力。 该方法还包括基于计算资源的评估标准将任务分配给计算资源,以便主动避免在三维微体系结构上产生热点。