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    • 4. 发明授权
    • System and method for deterministic testing of packet error rate in electronic devices
    • 电子设备中数据包错误率确定性测试的系统和方法
    • US08693351B2
    • 2014-04-08
    • US13191154
    • 2011-07-26
    • Christian Volf Olgaard
    • Christian Volf Olgaard
    • H04L12/26
    • H04L1/24H04L1/203H04W24/06
    • A method and system for testing packet error rate in electronic devices by transmitting a series of data packets from a testing device to a device under test (DUT) and setting a predefined number of received error-free data packets; evaluating whether a number of data packets from the series of data packets received error-free by the DUT equals the predefined number of received error-free data packets and transmitting additional data packets from the testing device to the DUT, at a power level known to produce zero received-packet errors in a correctly operating DUT, if the number of data packets from the series of data packets received error-free by the DUT does not equal the predefined number of received error-free data packets. Additional possible embodiments include evaluating whether a total number of data packets from the series of data packets and the additional error-free-power-level data packets received error-free by the DUT equals the predefined number of received error-free data packets and transmitting a confirmation data packet to the testing device in response to reception by the DUT of the predefined number of received error-free data packets.
    • 一种用于通过从测试设备向被测设备(DUT)发送一系列数据分组并且设置预定数量的接收到的无错误数据分组来测试电子设备中的分组错误率的方法和系统; 评估所述DUT接收的所述一系列数据分组的数据分组是否等于所接收的无错误数据分组的预定数量,并以已知的功率级别从所述测试装置向所述DUT发送附加数据分组 如果由DUT接收到的无错误数据分组的数据分组的数量不等于接收到的无错误数据分组的预定数量,则在正确操作的DUT中产生零接收分组错误。 其他可能的实施例包括评估来自该系列数据分组的数据分组的总数和DUT接收到的无错误功率级数据分组是否等于接收到的无错误数据分组的预定数量,并且发送 响应于DUT接收到预定数量的接收的无错误数据分组,向测试设备发送确认数据分组。
    • 5. 发明授权
    • System and method of maintaining correction of DC offsets in frequency down-converted data signals
    • 维持降频转换数据信号中DC偏移校正的系统和方法
    • US08537942B2
    • 2013-09-17
    • US13357370
    • 2012-01-24
    • Christian Volf OlgaardRuizu WangErdem Serkan Erdogan
    • Christian Volf OlgaardRuizu WangErdem Serkan Erdogan
    • H04B1/10
    • H04L25/061
    • Circuitry and method for reduce test time for wireless signal systems by using dynamic adaptive correction of DC offsets generated by the test instrument. The data signal is sampled for downstream processing including during pre-, inter-, or post-packet time intervals where no packet-data signal is occurring and where the device's power amplifier is turned off. The sampled data signal is measured for a DC offset occurring during these inter-packet time gaps. Compensating DC offset values are stored in a table indexed by frequency, gain and temperature range. When a subsequent test is carried out at that frequency, gain, and temperature range, the stored compensation value is used to correct the signal. DC offsets continue to be measured, stored and applied to captured signals, continuously refining the compensation values and decreasing the need for time-intensive calibrations. When a measured DC offset exceeds pre-determined limits, the instrument undergo a calibration step.
    • 通过使用由测试仪器产生的直流偏移的动态自适应校正,减少无线信号系统的测试时间的电路和方法。 数据信号被采样用于下游处理,包括在没有分组数据信号出现的前,后或后分组时间间隔以及设备的功率放大器被关闭的情况下。 对于在这些分组间间隙期间发生的DC偏移来测量采样数据信号。 补偿DC偏移值存储在由频率,增益和温度范围索引的表中。 当以该频率,增益和温度范围进行后续测试时,存储的补偿值用于校正信号。 DC补偿继续被测量,存储并应用于捕获的信号,不断地改善补偿值并减少对时间密集校准的需要。 当测量的直流偏移超过预定极限时,仪器将进行校准步骤。
    • 8. 发明授权
    • Digital communications test system for multiple input, multiple output (MIMO) systems
    • 用于多输入多输出(MIMO)系统的数字通信测试系统
    • US08228087B2
    • 2012-07-24
    • US12985848
    • 2011-01-06
    • Christian Volf OlgaardRay Wang
    • Christian Volf OlgaardRay Wang
    • G01R31/00
    • H04L1/244H04B7/0413H04L1/06H04L1/243
    • A digital communications test system and method for testing a plurality of devices under test (DUTs) in which multiple sets of a single vector signal analyzer (VSA) and single vector signal generator (VSG) can be used together to perform error vector magnitude (EVM) measurements for one or more DUTs in parallel, including one or more of composite, switched and multiple input multiple output (MIMO) EVM measurements. This allows N pairs of a VSA and VSG to test N DUTs with NxN MIMO in substantially the sane time as a single VSA and VSG pair can test a single DUT, thereby allowing a substantial increase in testing throughput as compared to that possible with only a single VSA and VSG set.
    • 一种用于测试多个待测器件(DUT)的数字通信测试系统和方法,其中多组单向量信号分析器(VSA)和单矢量信号发生器(VSG)可以一起用于执行误差矢量幅度(EVM )测量,包括并行的一个或多个DUT,包括复合,交换和多输入多输出(MIMO)EVM测量中的一个或多个。 这允许N对VSA和VSG在基本上理想的时间内以NxN MIMO测试N个DUT,因为单个VSA和VSG对可以测试单个DUT,从而允许测试吞吐量大大增加,与仅可能的 单VSA和VSG集。
    • 9. 发明授权
    • Digital communications test system for multiple input, multiple output (MIMO) systems
    • 用于多输入多输出(MIMO)系统的数字通信测试系统
    • US07948254B2
    • 2011-05-24
    • US12348992
    • 2009-01-06
    • Christian Volf OlgaardRay Wang
    • Christian Volf OlgaardRay Wang
    • G01R31/00
    • H04L1/244H04B7/0413H04L1/06H04L1/243
    • A digital communications test system and method for testing a plurality of devices under test (DUTs) in which multiple sets of a single vector signal analyzer (VSA) and single vector signal generator (VSG) can be used together to perform error vector magnitude (EVM) measurements for one or more DUTs in parallel, including one or more of composite, switched and multiple input multiple output (MIMO) EVM measurements. This allows N pairs of a VSA and VSG to test N DUTs with N×N MIMO in substantially the sane time as a single VSA and VSG pair can test a single DUT, thereby allowing a substantial increase in testing throughput as compared to that possible with only a single VSA and VSG set.
    • 一种用于测试多个待测器件(DUT)的数字通信测试系统和方法,其中多组单向量信号分析器(VSA)和单矢量信号发生器(VSG)可以一起用于执行误差矢量幅度(EVM )测量,包括并行的一个或多个DUT,包括复合,交换和多输入多输出(MIMO)EVM测量中的一个或多个。 这允许N对VSA和VSG在基本上理想的时间内以N×N MIMO测试N个DUT,因为单个VSA和VSG对可以测试单个DUT,从而允许测试吞吐量大大增加, 只有一个VSA和VSG集合。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR TESTING WIRELESS DEVICES
    • 用于测试无线设备的系统和方法
    • US20080320345A1
    • 2008-12-25
    • US11766282
    • 2007-06-21
    • Christian Volf Olgaard
    • Christian Volf Olgaard
    • G01R31/28
    • H04W24/06
    • A system for testing a communication device includes a testing module, a measurement module, and a control module. The testing module transmits one or more first test signals based on a first test sequence. The measurement module acquires test data by receiving one or more second test signals that are based on the one or more first test signals. The control module initiates the first test sequence in response to receiving a start test signal from an analysis system. The control module transfers the test data to the analysis system in response to a transfer data request. The control module initiates a second test sequence while the analysis system is analyzing the test data. The testing module generates and transmits one or more third test signals based on the second sequence when the second test sequence has been initiated.
    • 用于测试通信设备的系统包括测试模块,测量模块和控制模块。 测试模块基于第一测试序列发送一个或多个第一测试信号。 测量模块通过接收基于一个或多个第一测试信号的一个或多个第二测试信号来获取测试数据。 响应于从分析系统接收到起始测试信号,控制模块启动第一测试序列。 控制模块响应传输数据请求将测试数据传送到分析系统。 分析系统正在分析测试数据时,控制模块启动第二个测试顺序。 当第二测试序列已被启动时,测试模块基于第二序列生成并发送一个或多个第三测试信号。