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    • 42. 发明申请
    • SCADA UNIT
    • SCADA单位
    • US20100057265A1
    • 2010-03-04
    • US12521956
    • 2007-12-20
    • Frank Szemkus
    • Frank Szemkus
    • G06F1/26
    • G05B23/0208F03D7/047F05B2240/96F05B2260/80G05B15/02G05B2219/2619G05B2219/32406Y02E10/723
    • In order to improve a decentralized control and data recording unit (2) (SCADA unit) for installation in decentralized energy resources (DER), in particular, wind turbine units, and/or for decentralized use at the site of a decentralized energy resource (DER), in particular a wind turbine unit, wherein this control and data recording unit comprises a control unit, in particular a turbine control unit (11), for controlling the decentralized energy resources (DER), in particular wind turbines, a database (10) for storing operating data and/or operating parameters, and also a network communications interface (13) for exchanging data and/or control commands with external units (1, 14, 15, 29) via an external network (7), so that this control and data recording unit can be better integrated into the business processes of stakeholders and have the capability of flexibly adapting to different systems, changing customer wishes, and also changing hardware, it is proposed that said unit have a SCADA operating system kernel (9) for controlling and/or managing the turbine control unit (11), the database (10), and the communications unit (13).
    • 为了改进分散式控制和数据记录单元(SCADA单元),用于安装分散式能源(DER),特别是风力发电机组,和/或在分散式能源现场进行分散使用 DER),特别是风力涡轮机单元,其中该控制和数据记录单元包括控制单元,特别是涡轮机控制单元(11),用于控制分散的能量资源(DER),特别是风力涡轮机,数据库 10),用于存储操作数据和/或操作参数,以及用于经由外部网络(7)与外部单元(1,14,15,29)交换数据和/或控制命令的网络通信接口(13),因此 该控制和数据记录单元可以更好地集成到利益相关者的业务流程中,并具有灵活适应不同系统,改变客户愿望以及改变硬件的能力,建议所述单元具有S 用于控制和/或管理涡轮机控制单元(11),数据库(10)和通信单元(13)的CADA操作系统内核(9)。
    • 48. 发明授权
    • Method of and article of manufacture for determining probability of avian collision
    • 确定禽类碰撞概率的方法和制造方法
    • US07315799B1
    • 2008-01-01
    • US10718271
    • 2003-11-20
    • Richard Podolsky
    • Richard Podolsky
    • G06F17/10
    • F03D80/00F05B2240/96Y02E10/72Y02P70/523
    • A method of calculating probability of collision by birds within a wind park includes modeling a wind turbine to create a wind-turbine model, modeling a challenged bird to create a challenged-bird model, modeling a wind park to create a wind-park model, the wind park comprising at least one of the wind turbine, and calculating a probability of wind-turbine collision by the challenged bird. The step of calculating includes using the wind-turbine model, the challenged-bird model, and the wind-park model. A method for calculating a probability of collision by animals other than birds with structures including, but not limited to, wind turbines, is also disclosed.
    • 一种计算风力发电场内鸟类碰撞概率的方法包括对风力涡轮机进行建模,以创建风力涡轮机模型,对受挑战的鸟类进行建模,以创建受挑战的鸟类模型,对风力发电场建模以创建风力公园模型, 所述风力发电场包括所述风力涡轮机中的至少一个,并且计算受到挑战的鸟类的风力涡轮机碰撞的概率。 计算的步骤包括使用风力涡轮机模型,挑战鸟模型和风力公园模型。 还公开了一种用于计算具有结构但不限于风力涡轮机的结构的鸟以外的动物的碰撞概率的方法。