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    • 81. 发明申请
    • Radio Receiver in a Wireless Communications System
    • 无线电接收机在无线通信系统中
    • US20090110049A1
    • 2009-04-30
    • US12016640
    • 2008-01-18
    • Carlo LuschiSimon HuckettSimon WalkerSteve AllpressPhilip Jones
    • Carlo LuschiSimon HuckettSimon WalkerSteve AllpressPhilip Jones
    • H04L27/01
    • H04L25/03114H04B2201/7071H04L25/0212H04L2025/03566H04L2025/03726
    • Techniques are described for optimizing processing facilities of a receiver in a wireless communication environment, taking into consideration processing performance set against the computing resources and/or power consumption required to obtain the processing performance. An embodiment of a radio receiver is described that includes a channel equalization means arranged to receive digital samples of an incoming signal and to generate an equalized output, said channel equalization means including means for processing said digital samples in accordance with an equalizer algorithm utilizing a set of equalizer parameters. The receiver can include means for estimating at least one parameter of a channel over which the signal has been received, and means for selecting at least one of said equalizer parameters based on at least one of said estimated channel parameters. Related methods, algorithms, and computer program products are also described.
    • 描述了在无线通信环境中优化接收机的处理设施的技术,考虑到针对获得处理性能所需的计算资源和/或功耗设置的处理性能。 描述了一种无线电接收机的实施例,其包括信道均衡装置,其被配置为接收输入信号的数字样本并产生均衡的输出,所述信道均衡装置包括用于根据利用集合的均衡器算法处理所述数字样本的装置 均衡器参数。 接收机可以包括用于估计已经在其上接收信号的信道的至少一个参数的装置,以及用于基于所述估计的信道参数中的至少一个来选择所述均衡器参数中的至少一个的装置。 还描述了相关方法,算法和计算机程序产品。
    • 85. 发明申请
    • Charge storage device
    • 充电存储设备
    • US20070195486A1
    • 2007-08-23
    • US11228294
    • 2005-09-19
    • George PaulRory PynenburgPeter MahonAnthony VassalloPhilip JonesSarkis KeshishianAnthony Pandolfo
    • George PaulRory PynenburgPeter MahonAnthony VassalloPhilip JonesSarkis KeshishianAnthony Pandolfo
    • H01G9/00
    • H01G9/016H01G9/008H01G9/045H01G9/048H01G9/058H01G9/08H01G9/155H01G11/12H01G11/24H01G11/26H01G11/32H01G11/42H01G11/52H01G11/72H01G11/76Y02E60/13Y02T10/7022
    • A charge storage device comprising: a first electrode; a second electrode being opposed to and spaced apart from the first electrode; a porous separator disposed between the electrodes; a sealed package for containing the electrodes, the separator and an electrolyte in which the electrodes are immersed; and a first terminal and a second terminal being electrically connected to the first electrode and the second electrode respectively and both extending from the package to allow external electrical connect to the respective electrodes, wherein the gravimetric FOM of the device is greater than about 2.1 Watts/gram. Also described is a method of manufacturing a charge storage device, the method comprising the steps of: providing a first electrode; disposing a second electrode in opposition to and spaced apart from the first electrode; disposing a porous separator between the electrodes; containing within a sealed package the electrodes, the separator and an electrolyte, wherein the electrodes are immersed in the electrolyte; and electrically connecting a first terminal and a second terminal to the first electrode and the second electrode respectively such that the terminals extending from the package to allow external electrical connection to the respective electrodes, wherein the gravimetric FOM of the device is greater than about 2.1 Watts/gram.
    • 一种电荷存储装置,包括:第一电极; 与所述第一电极相对并间隔开的第二电极; 设置在电极之间的多孔隔膜; 用于容纳电极的密封包装,分离器和电极浸入其中的电解质; 以及第一端子和第二端子,其分别电连接到第一电极和第二电极,并且两者从封装延伸以允许外部电连接到相应的电极,其中该器件的重量FOM大于约2.1瓦特/ 公克。 还描述了一种制造电荷存储装置的方法,该方法包括以下步骤:提供第一电极; 将第二电极设置成与第一电极相对并间隔开; 在电极之间设置多孔隔板; 在密封包装中包含电极,隔板和电解质,其中电极浸入电解质中; 以及分别将第一端子和第二端子电连接到第一电极和第二电极,使得从封装件延伸的端子允许与各个电极的外部电连接,其中该装置的重量FOM大于约2.1瓦 /公克。
    • 90. 发明申请
    • Hydraulic powered pneumatic super charger for on-board inert gas generating system
    • 用于车载惰性气体发生系统的液压动力气动超级充电器
    • US20060292018A1
    • 2006-12-28
    • US11178049
    • 2005-07-08
    • Philip Jones
    • Philip Jones
    • F04B35/00
    • F04B45/022B64D37/32
    • The inert gas generating system includes an air separation module (ASM) and a super charger. The ASM includes an ASM inlet configured for receiving an air flow, and an ASM outlet configured for expelling nitrogen enriched air (NEA). The super charger has a hydraulic system including a cylinder, a hydraulic piston housed within the cylinder, and a switching valve. The switching valve has a hydraulic fluid inlet, a hydraulic fluid outlet, and hydraulic passages fluidly coupling the switching valve to the cylinder near opposing ends of the cylinder. The switching valve is configured to alternate hydraulic fluid received at the fluid inlet between the hydraulic passages. The super charger also has a pneumatic system having identical pneumatic pistons coupled to opposing sides of the hydraulic piston, where each pneumatic piston is coupled to a pneumatic chamber having an air inlet and an air outlet coupled to the ASM inlet.
    • 惰性气体发生系统包括空气分离模块(ASM)和超级充电器。 ASM包括配置为接收空气流的ASM入口和被配置为排出富氮空气(NEA)的ASM出口。 超级充电器具有包括气缸,容纳在气缸内的液压活塞和切换阀的液压系统。 切换阀具有液压流体入口,液压流体出口和液压通道,其将切换阀流体地连接到气缸附近的气缸两端。 切换阀构造成交替在液压通道之间的流体入口处接收的液压流体。 超级充电器还具有气动系统,其具有联接到液压活塞的相对侧的相同的气动活塞,其中每个气动活塞联接到具有连接到ASM入口的空气入口和空气出口的气动室。