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    • 1. 发明申请
    • Bypass of the namespace hierarchy to open files
    • 绕过命名空间层次结构打开文件
    • US20070255699A1
    • 2007-11-01
    • US11413225
    • 2006-04-28
    • Mahesh SreenivasStefan SteinerArkadi BrjazovskiSameet Agarwal
    • Mahesh SreenivasStefan SteinerArkadi BrjazovskiSameet Agarwal
    • G06F17/30
    • G06F17/3012G06F17/30165
    • A file namespace hierarchy bypass and method to access files are provided. The bypass can be employed, for example, as a computer-readable medium with instructions for generating a unique identifier associated with a file and instructions for accessing the file based on the unique identifier and a specified search space. A computer-readable medium having instructions for obtaining the unique identifier and specified search space associated with the file and instructions for generating a path designation by combining the unique identifier and the specified search space used to access the file may also be employed. The method for bypassing the namespace hierarchy of the file, for example, may include passing the unique identifier and specified search space to a program and accessing the file based on a path designation generated by the program by combining the unique identifier and specified search space.
    • 提供文件命名空间层次结构绕过和访问文件的方法。 旁路可以例如被用作具有用于生成与文件相关联的唯一标识符的指令的计算机可读介质和基于唯一标识符和指定搜索空间来访问文件的指令。 也可以采用具有用于获得与文件相关联的唯一标识符和指定搜索空间的指令的计算机可读介质,以及用于通过组合唯一标识符和用于访问文件的指定搜索空间来生成路径指定的指令。 例如,用于绕过文件的命名空间层次结构的方法可以包括将唯一标识符和指定的搜索空间传递给程序,并且基于由程序生成的路径指定,通过组合唯一标识符和指定的搜索空间来访问该文件。
    • 2. 发明申请
    • Mechanism to exchange primary data stream of a file
    • 交换文件的主数据流的机制
    • US20070214190A1
    • 2007-09-13
    • US11356940
    • 2006-02-17
    • Mahesh SreenivasArkadi BrjazovskiStefan SteinerRohan KumarSameet Agarwal
    • Mahesh SreenivasArkadi BrjazovskiStefan SteinerRohan KumarSameet Agarwal
    • G06F17/30
    • G06F17/30067Y10S707/99953Y10S707/99954
    • A file stream exchange system and method are provided. The system can be employed, for example, with a storage system that supports transactions as a primary mechanism and employs a rich type system. The system provides a mechanism for the storage system to provide reliable updates to file streams while preserving the common criteria for security. The system employs a unique way of remapping the file-streams associated with the file-backed items that eliminates the need for copying over basic attributes, security information and timestamps etc. Significantly, the system does not rename the files involved in the operation nor does the system rely on attribute tunneling to copy over any subset of attributes for the completion of the task. The system includes a replace stream component which is a kernel mode mechanism that allows transactional exchange of stream data of two file-backed items without violating the common criteria for security.
    • 提供文件流交换系统和方法。 该系统可以例如使用支持事务作为主要机制的存储系统并且使用富型系统。 该系统为存储系统提供一种机制,为文件流提供可靠的更新,同时保留了用于安全性的通用标准。 系统采用独特的方式重新映射与文件支持的项目相关联的文件流,无需复制基本属性,安全信息和时间戳等。重要的是,系统不重命名操作中涉及的文件,也不会 系统依靠属性隧道来复制任务的任何子集,以完成任务。 该系统包括一个替代流组件,它是一种内核模式机制,允许两个文件支持项目的流数据的事务交换,而不会违反通用的安全标准。
    • 3. 发明授权
    • Method for operating a wind energy installation and a wind energy installation
    • 运行风能装置和风能装置的方法
    • US07939955B2
    • 2011-05-10
    • US12160511
    • 2007-01-04
    • Stefan SteinerMartin Von Mutius
    • Stefan SteinerMartin Von Mutius
    • F03D7/04H02P9/04
    • F03D7/042F03D7/0224F03D7/0244F05B2270/1011F05B2270/107F05B2270/322F05B2270/327Y02E10/723
    • The invention relates to a method for operating a wind energy installation (10), in which the wind energy installation (10) has a rotor (12, 13, 22), at least one rotor blade (14) with an adjustable angle, a mechanical brake device (19) for braking the rotor (14), an operational control device (15, 15′) and a safety system (16, 20). The invention also relates to a corresponding wind energy installation (10). The method according to the invention is defined by the following method steps: braking of the rotor (12, 13, 22) by means of an angular adjustment (28) with an average angular adjustment rate of less than 8.5°/s of the at least one rotor blade (14) after a fault signal (30) occurs, braking of the rotor (12, 13, 22) by means of the mechanical brake device (19) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable first rotational speed limit, and triggering of the safety system (16, 20) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable second rotational speed limit.
    • 本发明涉及一种用于操作风能设备(10)的方法,其中风力设备(10)具有转子(12,13,22),至少一个具有可调角度的转子叶片(14) 用于制动转子(14)的机械制动装置(19),操作控制装置(15,15')和安全系统(16,20)。 本发明还涉及相应的风能装置(10)。 根据本发明的方法通过以下方法步骤来限定:通过角度调节(28)制动转子(12,13,22),平均角度调整率小于每秒的8.5°/ s 在发生故障信号(30)之后的至少一个转子叶片(14),一旦转子(12,13)的旋转速度一直通过机械制动装置(19)制动转子(12,13,22) ,22)超过预定义的第一转速限制,并且一旦所述转子(12,13,22)的转速超过预定义的第二转速限制,则触发所述安全系统(16,20)。
    • 4. 发明授权
    • Vehicle
    • 车辆
    • US06588858B2
    • 2003-07-08
    • US09881975
    • 2001-06-15
    • Steffen RitzStefan Steiner
    • Steffen RitzStefan Steiner
    • B60T824
    • B62D9/00B60K17/346B60T2270/303B62D11/08
    • A vehicle includes four wheels, a drive axle, a power train which connects a vehicle engine to the drive axle via a transmission, a clutch, and an axle differential, a brake system, which may brake at least the wheels associated with the drive axle independently of the other wheels, a steering system which includes a manual steering device, at which a driver may set a steering angle for steerable wheels, and a control system, which brakes at least the drive axle wheel inside the curve and generates a steering-supporting braking torque on this wheel below a predefined vehicle velocity and as of a predefined steering angle. In order to improve the steering support, the control system monitors the status of the transmission and/or the clutch, the control system actuating the brakes of the appropriate wheel as a function of this status in order to generate the steering-supporting braking torque.
    • 车辆包括四个车轮,一个驱动轴,一个通过变速器将车辆发动机连接到驱动轴的动力传动系,离合器和车轴差速器,制动系统,其可以至少制动与驱动轴相关联的车轮 独立于其它车轮的转向系统,其包括手动转向装置,驾驶员可以在该手动转向装置处设置用于可转向车轮的转向角,以及控制系统,其至少制动曲线内的驱动轴轮并产生转向装置, 将该车轮上的制动扭矩支撑在预定车速以下并且与预定义的转向角相对应。 为了改善转向支撑,控制系统监视变速器和/或离合器的状态,控制系统作为该状态的函数致动适当车轮的制动器,以产生转向支持制动转矩。
    • 5. 发明申请
    • METHOD FOR OPERATING A WIND ENERGY INSTALLATION AND A WIND ENERGY INSTALLATION
    • 用于操作风能安装和风能安装的方法
    • US20090295161A1
    • 2009-12-03
    • US12160511
    • 2007-01-04
    • Stefan SteinerMartin Von Mutius
    • Stefan SteinerMartin Von Mutius
    • H02P9/04
    • F03D7/042F03D7/0224F03D7/0244F05B2270/1011F05B2270/107F05B2270/322F05B2270/327Y02E10/723
    • The invention relates to a method for operating a wind energy installation (10), in which the wind energy installation (10) has a rotor (12, 13, 22), at least one rotor blade (14) with an adjustable angle, a mechanical brake device (19) for braking the rotor (14), an operational control device (15, 15′) and a safety system (16, 20). The invention also relates to a corresponding wind energy installation (10). The method according to the invention is defined by the following method steps: braking of the rotor (12, 13, 22) by means of an angular adjustment (28) with an average angular adjustment rate of less than 8.5°/s of the at least one rotor blade (14) after a fault signal (30) occurs, braking of the rotor (12, 13, 22) by means of the mechanical brake device (19) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable first rotational speed limit, and triggering of the safety system (16, 20) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable second rotational speed limit.
    • 本发明涉及一种用于操作风能设备(10)的方法,其中风力设备(10)具有转子(12,13,22),至少一个具有可调角度的转子叶片(14) 用于制动转子(14)的机械制动装置(19),操作控制装置(15,15')和安全系统(16,20)。 本发明还涉及相应的风能装置(10)。 根据本发明的方法通过以下方法步骤来限定:通过角度调节(28)制动转子(12,13,22),平均角度调整率小于每秒的8.5°/ s 在发生故障信号(30)之后的至少一个转子叶片(14),一旦转子(12,13)的旋转速度一直通过机械制动装置(19)制动转子(12,13,22) ,22)超过预定义的第一转速限制,并且一旦所述转子(12,13,22)的转速超过预定义的第二转速限制,则触发所述安全系统(16,20)。