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    • 2. 发明申请
    • DETERMINATION OF A CODE PHASE
    • 一个代码阶段的确定
    • WO2006067562A1
    • 2006-06-29
    • PCT/IB2005/003596
    • 2005-11-23
    • NOKIA CORPORATIONVALIO, HarriPIETILÄ, Samuli
    • VALIO, HarriPIETILÄ, Samuli
    • H04B1/707G01S1/00
    • H04B1/708G01S19/29G01S19/30H04B1/7097
    • The invention relates to determining a correct code phase of a received, code modulated carrier signal using a correlation portion, a frequency compensation portion, a coherent memory and a non-coherent memory. In order to compensate for a code Doppler effect and/or a carrier Doppler drift effect, a mapping portion maps correlation values either to the coherent memory or to the non-coherent memory. Alternatively, the mapping portion maps correlation values stored in the coherent memory or in the non-coherent memory to new positions. The mapping depends on a frequency compensation applied by the frequency compensation portion and elapsed integration time, and/or on a drift of a frequency offset in correlation values output by said correlation portion.
    • 本发明涉及使用相关部分,频率补偿部分,相干存储器和非相干存储器来确定接收的,编码调制的载波信号的正确码相位。 为了补偿代码多普勒效应和/或载波多普勒漂移效应,映射部分将相关值映射到相干存储器或非相干存储器。 或者,映射部分将存储在相干存储器或非相干存储器中的相关值映射到新位置。 映射取决于由频率补偿部分施加的频率补偿和经过的积分时间,和/或由所述相关部分输出的相关值中的频率漂移的漂移。
    • 3. 发明申请
    • ACQUISITION OF A CODE MODULATED SIGNAL
    • 获取代码调制信号
    • WO2006067538A1
    • 2006-06-29
    • PCT/IB2004/004221
    • 2004-12-21
    • NOKIA CORPORATIONVALIO, HarriPIETILÄ, Samuli
    • VALIO, HarriPIETILÄ, Samuli
    • G01S5/14
    • G01S19/33G01S19/256G01S19/30
    • The invention relates to the acquisition of a code modulated signal, wherein a first set of correlation results for correlations between the code modulated signal and a first replica code with different code phases and a second set of correlation results for correlations between the code modulated signal and a second replica code with different code phases are available. In order to achieve a high sensitivity, results from both sets of correlation results are combined (steps 304, 305, 306), wherein correlation results used in the combination are selected based on information on a relative difference between a correct code phase for both replica codes. Then, it is determined (steps 307) based on the combination whether at least one of the sets of correlation results comprises a correlation result representing the correct code phase for the first replica code or the second replica code, respectively.
    • 本发明涉及码调制信号的获取,其中针对码调制信号和具有不同码相位的第一复制码之间的相关性的第一组相关结果以及码调制信号与 具有不同代码阶段的第二个副本代码可用。 为了实现高灵敏度,组合两组相关结果的结果(步骤304,305,306),其中基于用于两个副本的正确码相位之间的相对差异的信息来选择组合中使用的相关结果 码。 然后,基于组合确定相关结果集中的至少一个是否分别包括表示第一副本码或第二副本码的正确码相位的相关结果(步骤307)。
    • 5. 发明申请
    • A METHOD AND APPARATUS FOR RECEIVING A SIGNAL
    • 用于接收信号的方法和装置
    • WO2005086368A1
    • 2005-09-15
    • PCT/IB2005/000289
    • 2005-02-04
    • NOKIA CORPORATIONNOKIA INC.PIETILÄ, SamuliVALIO, Harri
    • PIETILÄ, SamuliVALIO, Harri
    • H04B1/707
    • G01S19/30G01S19/33G01S19/37H04B1/707H04B2201/70707H04B2201/70715H04J13/10
    • The present invention provides a method for a flexible multimode operation of spread spectrum receivers, e.g., global navigation satellite system (GNSS) receivers, using a shared circuitry hardware configuration of the receiver for processing of different types of code division multiple access (CDMA) signals. According to said method the receiver utilizes shared channel circuitry to receive signals of different CDMA types providing a flexible multimode operation. The present invention provides a way to select the received signal type for each channel by replacing the dedicated channels with multimode channels suitable to multiple types of receiver signals. The multimode receiver is more flexible to operate in varying reception conditions. By utilizing shared channel circuitry the hardware size is kept small.
    • 本发明提供了一种使用接收机的共享电路硬件配置来处理不同类型的码分多址(CDMA)信号的扩频接收机(例如,全球导航卫星系统(GNSS))接收机的灵活多模操作的方法 。 根据所述方法,接收机利用共享信道电路来接收提供灵活多模操作的不同CDMA类型的信号。 本发明提供一种通过用适于多种类型的接收机信号的多模信道替换专用信道来选择每个信道的接收信号类型的方法。 多模接收机在变化的接收条件下操作更灵活。 通过利用共享信道电路,硬件尺寸保持较小。
    • 6. 发明申请
    • RECEPTION OF A SPREAD SPECTRUM MODULATED SIGNAL
    • 接收传播频谱调制信号
    • WO2005104392A1
    • 2005-11-03
    • PCT/FI2005/050128
    • 2005-04-21
    • NOKIA CORPORATIONVALIO, HarriPIETILÄ, Samuli
    • VALIO, HarriPIETILÄ, Samuli
    • H04B1/707
    • H04B1/7077H04B2201/70707H04B2201/70715
    • The present invention relates to a receiver (1) for receiving a spread spectrum modulated signal, comprising at least sampling means (1.1) for forming samples of a received signal, at least one reference code block (1.4) for generating at least first and second reference codes, and a correlation block (1.3). Said correlation block (1.3) comprises means (1.32, 1.33) for forming first and second reference code parts from at least one reference code, means (1.31) for forming a sample string from samples taken of a received signal, and correlation means (1.34) for correlating the first reference code part with the sample string to form first correlation part results, and for correlating the second reference code part with the sample string to form second correlation part results, wherein said correlations are arranged to be performed at different times and by using the same sample string. The invention also relates to an electronic device comprising a receiver, a module to be used in connection with a receiver, and a system comprising a transmitter for transmitting a spread spectrum modulated signal and a receiver for receiving the transmitted signal. Furthermore, the invention relates to a method and a computer software product.
    • 本发明涉及一种用于接收扩展频谱调制信号的接收机(1),至少包括用于形成接收信号样本的采样装置(1.1),至少一个参考码块(1.4),用于产生至少第一和第二 参考码和相关块(1.3)。 所述相关块(1.3)包括用于从至少一个参考码形成第一和第二参考码部分的装置(1.32,1.33),用于根据接收信号的采样形成采样串的装置(1.31)和相关装置(1.34 ),用于将第一参考代码部分与采样串相关联以形成第一相关部分结果,并且用于将第二参考代码部分与采样串相关联以形成第二相关部分结果,其中所述相关被布置为在不同时间执行, 通过使用相同的样本串。 本发明还涉及一种电子设备,包括接收机,与接收机结合使用的模块,以及包括用于发射扩频调制信号的发射机和用于接收发射信号的接收机的系统。 此外,本发明涉及一种方法和计算机软件产品。
    • 7. 发明申请
    • POSITIONING RECEIVER
    • 定位接收器
    • WO2005103752A1
    • 2005-11-03
    • PCT/FI2005/050131
    • 2005-04-22
    • NOKIA CORPORATIONVALIO, HarriPIETILÄ, Samuli
    • VALIO, HarriPIETILÄ, Samuli
    • G01S5/02
    • G01S19/34G01S19/24G01S19/29
    • The present invention relates to a positioning receiver (1) comprising one or more receiving channels (2) for receiving a signal from a positioning station (10.1-10.4), control means (2.1-2.8) for controlling the reception of the signal from the positioning station (10.1-10.4), and means (1.5, 1.6) for generating a clock signal for said acquisition and tracking means (2.1-2.8). The positioning receiver (1) also comprises means (1.9, 1.10, 1.11) for taking samples at at least first and second sampling rates, and means (1.12) for selecting samples from said samples taken at said at least first and second sampling rates, to be used in said control means (2.1-2.8), for controlling signal reception. Furthermore, the invention relates to a system, a wireless communication device (4), a module, a method, and a computer software product.
    • 定位接收机技术领域本发明涉及一种定位接收机(1),其包括用于从定位台(10.1-10.4)接收信号的一个或多个接收信道(2),控制装置(2.1-2.8),用于控制从 定位站(10.1-10.4)和用于产生所述采集和跟踪装置(2.1-2.8)的时钟信号的装置(1.5,1.6)。 定位接收器(1)还包括用于以至少第一和第二采样率采样的装置(1.9,1.10,1.111)和用于从所述至少第一和第二采样率采样的所述采样中选择样本的装置(1.12) 用于所述控制装置(2.1-2.8)中,用于控制信号接收。 此外,本发明涉及一种系统,无线通信设备(4),模块,方法和计算机软件产品。
    • 8. 发明申请
    • VALIDATION OF BEACON SIGNALS
    • 贝塔信号的验证
    • WO2004038449A1
    • 2004-05-06
    • PCT/IB2002/004424
    • 2002-10-24
    • NOKIA CORPORATIONAKOPIAN, DavidVALIO, HarriPIETILÄ, SamuliSYRJÄRINNE, Jari
    • AKOPIAN, DavidVALIO, HarriPIETILÄ, SamuliSYRJÄRINNE, Jari
    • G01S5/14
    • G01S5/0221G01S19/20
    • The invention relates to method for validating detected code modulated signals transmitted by beacons of a positioning system and received by a receiver. In order to enable such a validation, it is proposed that the method comprises as a first step performing measurements for the detected beacon signals. Then, at least one of the detected beacon signals is selected as calibration signal. In a next step, at least one allowed range for results of measurements for detected beacon signals other than said calibration signal are determined based on measurements for the detected calibration signal and on an available reference position of the receiver. Finally, each detection of a beacon signal for which results of performed measurements are outside of an allowed range is rejected. The invention relates equally to a corresponding receiver, to an electronic device comprising such a receiver, to a device cooperating with such a receiver and to a corresponding positioning system.
    • 本发明涉及用于验证由定位系统的信标发送并由接收机接收的检测到的码调制信号的方法。 为了实现这种验证,提出了该方法包括作为第一步骤对所检测到的信标信号进行测量。 然后,选择检测到的信标信号中的至少一个作为校准信号。 在下一步骤中,基于检测到的校准信号的测量和接收机的可用参考位置来确定除了所述校准信号之外的检测到的信标信号的测量结果的至少一个允许范围。 最后,拒绝对所执行的测量结果超出允许范围的信标信号的每次检测。 本发明同样涉及相应的接收机,包括这种接收机的电子设备,与这种接收机配合的设备和相应的定位系统。
    • 9. 发明申请
    • SUPPORTING AN ASSISTED SATELLITE BASED POSITIONING
    • 支持辅助卫星定位
    • WO2006134413A1
    • 2006-12-21
    • PCT/IB2005/001640
    • 2005-06-13
    • NOKIA CORPORATIONSYRJÄRINNE, JariVALIO, Harri
    • SYRJÄRINNE, JariVALIO, Harri
    • G01S1/00
    • G01S19/256G01S19/05G01S19/258
    • For supporting a satellite based positioning of a mobile arrangement (30,40) with assistance data, a communication network converts parameters of a dedicated orbit model describing a movement of a satellite (50,60), which dedicated orbit model is defined for a particular satellite based positioning system, into parameters of a common orbit model describing a movement of a satellite (50,60). Alternatively or in addition, the network replaces a reference value that is based on a satellite based positioning system time in available parameters of an orbit model by a reference value that is based on a communication system time. After the parameter conversion and/or the reference value replacement, the parameters are provided as a part of assistance data for the satellite based positioning. Alternatively or in addition, a set of data is transmitted in one direction between the mobile arrangement and the communication network, which is independent of the employed positioning mode.
    • 为了支持具有辅助数据的移动装置(30,40)的基于卫星的定位,通信网络转换描述卫星(50,60)的移动的专用轨道模型的参数,其中 专用轨道模型是针对特定的基于卫星的定位系统定义为描述卫星移动的公共轨道模型的参数(50,60)。 备选地或附加地,网络用基于通信系统时间的参考值来替换基于基于卫星的定位系统时间的参考值在轨道模型的可用参数中。 在参数转换和/或参考值替换之后,参数被提供为用于基于卫星的定位的辅助数据的一部分。 备选地或附加地,一组数据在移动装置和通信网络之间的一个方向上传输,这与使用的定位模式无关。
    • 10. 发明申请
    • DETERMINATION OF THE TRANSMISSION TIME OF A SIGNAL PART IN A POSITIONING SYSTEM
    • 确定定位系统中信号部分的传输时间
    • WO2003083501A1
    • 2003-10-09
    • PCT/IB2002/000985
    • 2002-03-28
    • NOKIA CORPORATIONAKOPIAN, DavidVALIO, Harri
    • AKOPIAN, DavidVALIO, Harri
    • G01S1/04
    • G01S19/24G01S19/256G01S19/258
    • The invention relates to a method for determining the time of transmission of a signal part of a code modulated signal transmitted by a beacon of a positioning system and received by a receiver of the positioning system. In order to enable such a determination in week signal conditions, it is proposed that measured subcomponents of the time of transmission of at least two signal parts are compared with corresponding predicted subcomponents in a way resulting in a combined difference for all signal parts. The comparison is performed for a plurality of assumed errors in the predicted subcomponent. The accurate time of transmission of a signal part is then determined based on the determined error value which results in the smallest combined difference. The invention relates equally to a corresponding receiver and to a corresponding positioning system.
    • 本发明涉及一种用于确定由定位系统的信标发射并由定位系统的接收机接收的码调制信号的信号部分的传输时间的方法。 为了能够在周信号条件下进行这样的判断,提出将至少两个信号部分的发送时间的测量次要部分与对应的预测子部件进行比较,从而导致所有信号部分的组合差异。 针对预测的子部件中的多个假定错误执行比较。 然后,基于确定的误差值来确定信号部分的准确传输时间,其导致最小的组合差异。 本发明同样涉及对应的接收机和对应的定位系统。