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    • 1. 发明授权
    • First significant path detection
    • 第一次重要的路径检测
    • US08891698B2
    • 2014-11-18
    • US12326762
    • 2008-12-02
    • Stefania SesiaGiuseppe MontalbanoPierre Demaj
    • Stefania SesiaGiuseppe MontalbanoPierre Demaj
    • H03D1/04H04B1/7115H04B1/7117
    • H04B1/7115H04B1/7117
    • A scheme determines the first significant path (FSP) of a received multipath signal, from data defining the relative delay and the amplitude of the individual signal paths occurring in a series of time frames. The scheme includes filtering the data to spread the signal paths, performing a persistence test between frames to reject spurious signal paths, combining the energy of the signal paths in a frame, applying a test to determine the time at which the combined energy satisfies a criterion, and selecting the FSP dependent on that time. The combined energy may be evaluated within a sliding window, and the position of the window within the frame determined that maximizes the combined energy. Alternatively, the combined energy may be evaluated as the cumulative energy through the frame, and the position determined at which the cumulative energy reaches a threshold.
    • 方案从定义在一系列时间帧中出现的各个信号路径的相对延迟和振幅的数据确定接收的多路径信号的第一有效路径(FSP)。 该方案包括对数据进行滤波以扩展信号路径,在帧之间执行持续测试以抑制寄生信号路径,组合帧中的信号路径的能量,应用测试来确定组合能量满足标准的时间 ,并根据该时间选择FSP。 可以在滑动窗口内评估组合的能量,并且确定框架内的窗口的位置使得组合能量最大化。 或者,可以将组合的能量评估为通过该帧的累积能量,以及确定累积能量达到阈值的位置。
    • 2. 发明授权
    • Process for improving the determination of the SIR target in an outer loop power control mechanism of UMTS UE
    • 用于改善UMTS UE的外环功率控制机制中的SIR目标的确定的过程
    • US08606313B2
    • 2013-12-10
    • US13263068
    • 2010-03-31
    • Pierre DemajFabrizio Tomatis
    • Pierre DemajFabrizio Tomatis
    • H04B7/00H04B17/00
    • H04W52/12H04W52/20H04W52/241
    • In a receiver of a UMTS telecommunication system a process for performing the Outer Loop power control in a User Equipment is provided. The receiver includes an improved outer loop power control mechanism that estimates a Signal to Interference target (SIRtarg) based on a Block Error Rate target (BLERtarg) received from a base station. The outer loop control mechanism estimates a BLER value (BLERest) based on a number of received blocks and then adjusts a SIR target value (SIRtarg) based on the relationship between BLERtarg and BLERest. Meanwhile, simultaneously in parallel, the outer loop power control mechanism monitors for a potential convergence of a first SIR value with the SIRtarg and upon detection of such potential convergence applying a correction to SIRtarg.
    • 在UMTS电信系统的接收机中,提供了在用户设备中执行外环功率控制的过程。 接收机包括改进的外环功率控制机制,其基于从基站接收的块错误率目标(BLERtarg)来估计信号干扰目标(SIRtarg)。 外环控制机构基于接收块的数量来估计BLER值(BLERest),然后基于BLERtarg和BLERest之间的关系来调整SIR目标值(SIRtarg)。 同时,同时并行地,外环功率控制机构监测第一SIR值与SIRtarg的潜在收敛,并且在检测到对SIRtarg进行校正的这种潜在收敛时。
    • 3. 发明授权
    • Symbol-level adaptation method for equalizer coefficients, memory, equalizer and receiver for implementing the method
    • 用于均衡器系数的符号级适应方法,用于实现该方法的存储器,均衡器和接收器
    • US08462756B2
    • 2013-06-11
    • US12162818
    • 2007-01-31
    • Ahmet BastugPierre Demaj
    • Ahmet BastugPierre Demaj
    • H04B7/216
    • H04L25/03038H04B1/7097H04J13/0044H04L2025/0377
    • A symbol-level adaptation method to adapt at least one coefficient of an equalizer, the method comprising the steps of: a) executing an adaptive algorithm that calculates the value of the equalizer coefficient, the adaptive algorithm having a tunable parameter that determines how close the calculated coefficient value is to the optimal solution, b) modifying the value of the equalizer coefficient according to the calculated coefficient value at an intermediate instant tΔ strictly between two consecutive instants tA and tB, instants tA and tB corresponding to the beginning and the end of a pilot symbol period, respectively, and c) adjusting the value of the tunable parameter according to a number Δ representing the number of chips yet to be received before instant tB or already received since instant tA.
    • 一种用于适应均衡器的至少一个系数的符号级适配方法,所述方法包括以下步骤:a)执行计算所述均衡器系数的值的自适应算法,所述自适应算法具有可调参数,所述可调参数确定所述均衡器 计算的系数值为最优解,b)根据在两个连续时刻tA和tB之间的中间时刻tDelta处的计算出的系数值修改均衡器系数的值,对应于开始和结束的时刻tA和tB 导频符号周期,以及c)根据代表在时刻tB之前尚未接收的芯片数目的数量Delta调整可调谐参数的值,或者从时刻tA起已经接收到的可调参数的值。
    • 4. 发明申请
    • WIRELESS TRANSMISSION POWER CONTROL METHOD AND SYSTEM
    • 无线传输功率控制方法与系统
    • US20100105407A1
    • 2010-04-29
    • US12593569
    • 2008-03-18
    • Pierre DemajFabrizio Tomatis
    • Pierre DemajFabrizio Tomatis
    • H04W72/00H04B7/00
    • H04W52/241H04W52/12H04W52/143H04W52/343
    • A wireless communication system includes a primary station which has a transmitter for transmitting wireless signals on a downlink, and a plurality of secondary stations each having a receiver for receiving signals on the downlink and a transmitter for transmitting on an uplink. In a normal, loaded condition a synchronization channel and a data channel are present on the downlink and closed power control is achieved by measuring the signal to interference ratio (SIR) in a received downlink transmission, comparing the measured SIR with a target SIR and sending a power adjust indication on the uplink to cause the primary station to adjust its transmitted power on the downlink. The secondary station monitors the downlink and, in response to detecting an unloaded cell condition, determines a target SIR offset which it applies to the target SIR to overcome interference from the presence of the synchronization channel on the downlink.
    • 无线通信系统包括主站,其具有用于在下行链路上发送无线信号的发射机,以及多个次站,每个副站具有用于在下行链路上接收信号的接收机和用于在上行链路上发送的发射机。 在正常的加载条件下,下行链路上存在同步信道和数据信道,并且通过测量接收的下行链路传输中的信号干扰比(SIR)来实现闭合功率控制,将测量的SIR与目标SIR进行比较并发送 在上行链路上进行功率调整指示,使得主站在下行链路上调整发射功率。 次站监视下行链路,并且响应于检测到未加载的小区状况,确定其应用于目标SIR的目标SIR偏移,以克服来自下行链路上的同步信道的存在的干扰。
    • 6. 发明授权
    • Wireless transmission power control method and system
    • 无线传输功率控制方法及系统
    • US09161315B2
    • 2015-10-13
    • US12593569
    • 2008-03-18
    • Pierre DemajFabrizio Tomatis
    • Pierre DemajFabrizio Tomatis
    • H04W52/12H04W52/24H04W52/14H04W52/34
    • H04W52/241H04W52/12H04W52/143H04W52/343
    • A wireless communication system includes a primary station which has a transmitter for transmitting wireless signals on a downlink, and a plurality of secondary stations each having a receiver for receiving signals on the downlink and a transmitter for transmitting on an uplink. In a normal, loaded condition a synchronization channel and a data channel are present on the downlink and closed power control is achieved by measuring the signal to interference ratio (SIR) in a received downlink transmission, comparing the measured SIR with a target SIR and sending a power adjust indication on the uplink to cause the primary station to adjust its transmitted power on the downlink. The secondary station monitors the downlink and, in response to detecting an unloaded cell condition, determines a target SIR offset which it applies to the target SIR to overcome interference from the presence of the synchronization channel on the downlink.
    • 无线通信系统包括主站,其具有用于在下行链路上发送无线信号的发射机,以及多个次站,每个副站具有用于在下行链路上接收信号的接收机和用于在上行链路上发送的发射机。 在正常的加载条件下,下行链路上存在同步信道和数据信道,并且通过测量接收的下行链路传输中的信号干扰比(SIR)来实现闭合功率控制,将测量的SIR与目标SIR进行比较并发送 在上行链路上进行功率调整指示,使得主站在下行链路上调整发射功率。 次站监视下行链路,并且响应于检测到未加载的小区状况,确定其应用于目标SIR的目标SIR偏移,以克服来自下行链路上的同步信道的存在的干扰。
    • 8. 发明授权
    • CDMA receivers and CDMA communications systems
    • CDMA接收机和CDMA通信系统
    • US08275022B2
    • 2012-09-25
    • US12530181
    • 2008-03-05
    • Fabrizio TomatisPierre Demaj
    • Fabrizio TomatisPierre Demaj
    • H04B1/00
    • H04B1/7117
    • A CDMA communications system includes a primary station and at least one secondary station. The secondary station includes a receiver for receiving CDMA signals transmitted on the downlink. The receiver includes a plurality of Rake finger receivers having inputs for receiving signals and outputs coupled to a combining stage for combining their output signals constructively, a finger assignment stage for assigning the finger receivers to respective received signals, a processing stage for estimating the speed of the CDMA receiver from the signals received and for varying the time required to make a finger replacement decision in response to the estimated speed so that the time required decreases as the speed of the receiver increases and vice versa.
    • CDMA通信系统包括主站和至少一个次站。 次站包括用于接收在下行链路上发送的CDMA信号的接收机。 接收机包括多个具有用于接收信号的输入端的输入端和耦合到组合级的输出,用于构造性地组合它们的输出信号;手指分配级,用于将手指型接收机分配到相应的接收信号;处理级,用于估计 所述CDMA接收机根据所接收的信号和用于响应于所估计的速度来改变进行手指替换判定所需的时间,以便所需的时间随着接收机的速度增加而减小,反之亦然。
    • 9. 发明申请
    • Symbol-Level Adaptation Method for Equalizer Coefficients, Memory, Equalizer and Receiver for Implementing the Method
    • 用于实现该方法的均衡器系数,存储器,均衡器和接收器的符号级适配方法
    • US20090028124A1
    • 2009-01-29
    • US12162818
    • 2007-01-31
    • Ahmet BastugPierre Demaj
    • Ahmet BastugPierre Demaj
    • H04B7/216
    • H04L25/03038H04B1/7097H04J13/0044H04L2025/0377
    • A symbol-level adaptation method to adapt at least one coefficient of an equalizer, wherein the method comprises the steps of: a) executing an adaptive algorithm that calculates the value of the equalizer coefficient, the adaptive algorithm having a tunable parameter that determines how the calculated coefficient value is close to the optimal solution b) modifying the value of the equalizer coefficient according to the calculated coefficient value at an intermediate instant tΔ strictly between two consecutive instants tA and tB, instants tA and tB corresponding to the beginning and the end of a pilot symbol period respectively, and c) adjusting the value of the tunable parameter according to a number Δ representing the number of chips yet to be received before instant tB or already received since instant tA.
    • 一种用于适应均衡器的至少一个系数的符号级适配方法,其中所述方法包括以下步骤:a)执行计算所述均衡器系数的值的自适应算法,所述自适应算法具有确定如何 计算出的系数值接近于最优解b)根据在两个连续时刻tA和tB之间的中间时刻tDelta处的计算出的系数值来修正均衡器系数的值,对应于tA和tB的开始和结束的时刻tA和tB 导频符号周期,以及c)根据代表在瞬时tB之前尚未接收的芯片数目的数量Delta来调整可调参数的值,或者从时刻tA起已经接收到的芯片数目。