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    • 2. 发明申请
    • METHOD AND DEVICE FOR CONFIGURING A SENSOR, CORRESPONDING SENSOR AND SYSTEM FOR A MACHINE WITH A PLURALITY OF SENSORS
    • 方法和系统配置传感器,相关传感器和系统,ONE传感器具有机器的
    • WO0106332A8
    • 2001-04-19
    • PCT/EP0006216
    • 2000-07-04
    • ABB RESEARCH LTDAPNESETH CHRISTOFFERKJESBU SNORREVEFLING HARALDVALLESTAD ANNE ELISABETH
    • APNESETH CHRISTOFFERKJESBU SNORREVEFLING HARALDVALLESTAD ANNE ELISABETH
    • G01D3/02G01D18/00G05B9/02G05B19/042
    • G01D3/022G01D18/008G05B9/02
    • According to the inventive method for configuring the sensor, the sensor (1.1 1s) continuously compares sensor data (SD) detected in the sensor mode to ensure that they correspond with characteristic, stored, predetermined sensor data (SDM). As soon as the sensor has established that the data correspond, it switches from the sensor mode to a configuration mode. The data corresponding to the characteristic sensor data (SDM) are used for configuring the sensor (1.1 1.s). After this configuration data has been received, the sensor switches back to sensor mode. The invention also relates to a configurable sensor. Said sensor is provided with a comparator (3), which continuously compares sensor data (SD) detected by a sensing element (2) to ensure that they correspond with the characteristic, stored, predetermined sensor data (SDM). An electronic evaluating device (4) for configuring the sensor is also provided. The comparator (3) intermittently subjects said evaluating device to the received sensor data as soon as it is established that the data correspond.
    • 它提出了一种方法,用于配置的传感器,其中,在所述传感器模式传感器(1.1 ... 1.S)根据所述特征存储的预定的传感器数据检测到的正在进行的基础上的传感器数据(SD)(SDM)进行比较。 当数据匹配时发现传感器切换传感器模式进入配置模式。 下面对传感器(1.1 ... 1.S)的配置数据的特性的传感器数据(SDM)被使用。 在接收到该配置数据被改变回传感器模式。 此外,可配置的传感器,提出了其中比较器(3)提供一种持续的基础上根据所述特征存储的预定的传感器数据(SDM)进行比较,以一个拾取器(2)检测到的传感器数据(SD),并且其中电子评估单元(4),用于 配置被提供,其暂时应用于当数据匹配时具有接收到的传感器数据中的比较器(3)。 有利的附加编程接口可以保存配置的传感器。
    • 3. 发明申请
    • FAST FREQUENCY HOPPING ADAPTED TO THE ENVIRONMENT
    • 快速适应环境的频率
    • WO2014032721A1
    • 2014-03-06
    • PCT/EP2012/066903
    • 2012-08-30
    • ABB RESEARCH LTDVALLESTAD, AnneENDRESEN, JanCARLSON, ErikRIMSTAD, Knut
    • VALLESTAD, AnneENDRESEN, JanCARLSON, ErikRIMSTAD, Knut
    • H04B1/713
    • H04B1/7136H04B1/713H04B1/715H04B17/309H04B2001/7154H04W24/08H04W84/22
    • A transmitting node (24) in an industrial wireless network (WN1) transmits a first number of bits (BS) to a receiving node (30), where at least one bit is partitioned into segments and each segment is transmitted at a different frequency according to a frequency transmission scheme. The receiving node (30) receives the number of bits (BS), determines the quality of each segment of a received bit, collects quality determinations of segments, forms a quality measure for each frequency through combining quality determinations of the corresponding frequency, compares each quality measure with a quality measure criterion, determines at least one frequency that does not fulfill the quality measure criterion and informs (FII) the transmitting node about frequencies for which the corresponding quality measures do not fulfill the quality measure criterion. The transmitting node receives the information (FII) and updates the frequency transmission scheme.
    • 工业无线网络(WN1)中的发送节点(24)向接收节点(30)发送第一数量的比特(BS),其中至少一个比特被分割为段,并且每个段以不同的频率被发送,根据 到频率传输方案。 接收节点(30)接收比特数(BS),确定接收到的比特的每个片段的质量,收集片段的质量确定,通过组合对应频率的质量确定来形成每个频率的质量度量, 质量测量标准,确定不符合质量测量标准的至少一个频率,并通知(FII)发送节点关于相应质量度量不符合质量测量标准的频率。 发送节点接收信息(FII)并更新频率传输方案。