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    • 47. 发明申请
    • Optimized ordering of firmware modules
    • 优化固件模块的排序
    • US20050210222A1
    • 2005-09-22
    • US10804405
    • 2004-03-18
    • Yan LiuVincent Zimmer
    • Yan LiuVincent Zimmer
    • G01M99/00G01M19/00
    • G06F11/3608G06F9/4403
    • A method and system to optimize ordering of firmware modules. Optimizing the dispatch order of firmware modules reduces the boot time of a computer system. A plurality of module-to-module interfaces are collected from a plurality of firmware modules, wherein a module-to-module interface allows a first firmware module of the plurality of firmware modules to invoke a second firmware module of the plurality of firmware modules. A plurality of dependency expressions corresponding to the plurality of firmware modules are collected, wherein each dependency expression of a firmware module describes the module-to-module interfaces needed for execution of the firmware module. The plurality of firmware modules are sorted into an optimized order based on the plurality of dependency expressions and the plurality of module-to-module interfaces. In one embodiment, the plurality of firmware modules operate in accordance with an Extensible Firmware Interface (EFI) specification.
    • 一种优化固件模块排序的方法和系统。 优化固件模块的调度顺序可减少计算机系统的启动时间。 从多个固件模块收集多个模块到模块接口,其中模块到模块接口允许多个固件模块中的第一固件模块调用多个固件模块中的第二固件模块。 收集对应于多个固件模块的多个依赖表达式,其中固件模块的每个依赖表达式描述了执行固件模块所需的模块到模块接口。 基于多个依赖表达式和多个模块到模块接口,将多个固件模块分类为优化顺序。 在一个实施例中,多个固件模块根据可扩展固件接口(EFI)规范进行操作。
    • 48. 发明申请
    • Packet scheduling method and apparatus
    • 分组调度方法和装置
    • US20050147103A1
    • 2005-07-07
    • US10822145
    • 2004-04-12
    • Zong YangYan LiuYuMing WangBing Fan
    • Zong YangYan LiuYuMing WangBing Fan
    • H04L12/56
    • H04L47/2441H04L47/19H04L47/50H04L47/564
    • A packet scheduling method and apparatus including (a) classifying a stream that enters into a scheduler according to a data rate and/or length of a packet; (b) if the packet of the classified stream is a first packet, storing the packet in a first stream queue, and if the packet of the classified stream is a subsequent packet, storing the packet in a second stream queue; (c) counting a virtual start service time of the packet stored in the first stream queue according to a weighted fairness queuing method; and (d) counting a virtual start service time of the packet stored in the second stream queue as a virtual start service time of the previous packet.
    • 一种分组调度方法和装置,包括:(a)根据分组的数据速率和/或长度对进入调度器的流进行分类; (b)如果分类流的分组是第一分组,则将分组存储在第一流队列中,并且如果分类流的分组是后续分组,则将分组存储在第二流队列中; (c)根据加权公平排队方法对存储在第一流队列中的分组的虚拟启动服务时间进行计数; 以及(d)将存储在第二流队列中的分组的虚拟启动服务时间计数为前一分组的虚拟开始服务时间。
    • 49. 发明授权
    • Distributed resource (DR) stabilization control for microgrid applications
    • 微电网应用的分布式资源(DR)稳定控制
    • US06819087B2
    • 2004-11-16
    • US10329684
    • 2002-12-27
    • Robert DelmericoGautam SinhaYan Liu
    • Robert DelmericoGautam SinhaYan Liu
    • H02P910
    • H02J3/38H02J3/24H02J9/00
    • A power electronic based DR (distributed resource e.g., a UPS (uninterrupted power supply), Fuel Cell or Microturbine) is controlled to emulate a voltage source behind an impedance and behave as a power system stabilizer. The impedance in the DR is emulated and an estimate of impedance at the power/electronic interface is derived and applied to the control of the DR in a manner wherein the power and voltage swings on systems (loads) that otherwise would have difficulty with dynamic loads, are stabilized. Damping and synchronizing power are provided measuring only voltage, current and frequency at the interface between the DR and the load. The DR may include some energy storage.
    • 控制基于功率电子的DR(分布式资源,例如,UPS(不间断电源),Fuel Cell或Microturbine)来模拟阻抗背后的电压源并且作为电力系统稳定器。 DR中的阻抗被仿真,并且推导出功率/电子接口处的阻抗估计,并将其应用于DR的控制,其中功率和电压摆动在系统(负载)上,否则将难以动态负载 ,稳定。 提供阻尼和同步电源,仅测量DR和负载之间的接口处的电压,电流和频率。 DR可能包括一些能量存储。