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    • 2. 发明授权
    • Method and device for measuring and quantifying surface defects on a test surface
    • 用于测量和定量测试表面上的表面缺陷的方法和装置
    • US06667800B1
    • 2003-12-23
    • US09375848
    • 1999-08-17
    • Peter LarssonAnders LarssonErland Max
    • Peter LarssonAnders LarssonErland Max
    • G01N2100
    • G01N21/8851G01B11/303
    • Method and apparatus for measuring and quantifying surface finishing defects on a coated opaque test surface including utilizing at least one light source, at least one camera, and a central unit that has image analysis capability. At least two partial images are recorded with the camera while illuminating the opaque test surface using the light source. The two partial images are produced from the test surface by differing the angle of incident light for different partial images. The two partial images are processed by the central unit thereby establishing a difference image that is analyzed to quantify the degree of surface finishing defects on the coated opaque test surface. Optionally, the central unit further has operational control capabilities over at least one of the light sources and camera.
    • 包括利用至少一个光源,至少一个照相机和具有图像分析能力的中央单元来测量和量化涂覆的不透明测试表面上的表面光洁度缺陷的方法和装置。 用照相机记录至少两个部分图像,同时使用光源照亮不透明测试表面。 通过对不同的部分图像的入射光的角度不同,从测试表面产生两个部分图像。 两个部分图像由中央单元处理,从而建立分析的差分图像,以量化涂覆的不透明测试表面上的表面修整缺陷的程度。 可选地,中央单元还具有在光源和相机中的至少一个上的操作控制能力。
    • 6. 发明授权
    • Methods and arrangements for determining radio characteristics of a radio link
    • 确定无线电链路的无线电特性的方法和装置
    • US08699942B2
    • 2014-04-15
    • US13129778
    • 2008-11-18
    • Pål FrengerNiklas JohanssonPeter Larsson
    • Pål FrengerNiklas JohanssonPeter Larsson
    • H04B3/36H04B1/60H04B7/15
    • H04B7/155H04W52/46
    • A method and arrangement in a first node (101) for determining radio characteristics of a radio link between a first repeater (103, 203) and at least one second repeater (104, 204) are provided. The first node sends a first message, to the first repeater (103, 203), instructing the first repeater (103, 203) to send a radio signal being measureable by the second repeater (104, 204). Furthermore, the first node sends a second message, to said at least one second repeater, instructing said at least one second repeater (104, 204) to measure on the radio signal. The first node receives measurement data of the radio signal, measured by said at least one second repeater (104, 204). The first node (101) determines radio characteristics of the radio link between the first repeater (103, 203) and said at least one second repeater based on the measurement data. Methods and arrangements in a first and second repeater and a method and arrangement in a second node for contributing to radio characteristics determination are provided.
    • 提供了用于确定第一中继器(103,203)和至少一个第二中继器(104,204)之间的无线电链路的无线电特性的第一节点(101)中的方法和装置。 第一节点向第一中继器(103,203)发送第一消息,指示第一中继器(103,203)发送可由第二中继器(104,204)测量的无线电信号。 此外,第一节点向所述至少一个第二中继器发送第二消息,指示所述至少一个第二中继器(104,204)在无线电信号上进行测量。 第一节点接收由所述至少一个第二中继器(104,204)测量的无线电信号的测量数据。 第一节点(101)基于测量数据确定第一中继器(103,203)和所述至少一个第二中继器之间的无线电链路的无线电特性。 提供了第一和第二中继器中的方法和布置以及用于有助于无线电特性确定的第二节点中的方法和装置。
    • 7. 发明授权
    • Coordinated multipoint transmission/reception user grouping
    • 协调多点发送/接收用户分组
    • US08559992B2
    • 2013-10-15
    • US13120152
    • 2008-09-24
    • Peter LarssonQingyu MiaoJiansong Gan
    • Peter LarssonQingyu MiaoJiansong Gan
    • H04B15/00
    • H04W72/082H04W4/08H04W8/24H04W48/08H04W72/0446H04W72/0453H04W72/06
    • User grouping is employed to tradeoff the COMP forward link capacity and required reverse link feedback, which makes the design of COMP practical and flexible. A channel element, such as the large scale fading, is measured for each distributed transmitter and UE pair based on reference signals, and the network receives this information as feedback in the reverse link. The COMP determines a maximum cross interference level αreq that is affordable, based on the available reverse link capacity for feedback. If this maximum cross interference level αreq is exceeded, geographically separate UEs are divided into as few groups as possible, with UEs within each group separated, and the groups are allocated different time/frequency resource blocks. The grouping is done with the constraint that the cross interference does not exceed αreq.
    • 用户分组用于权衡COMP前向链路容量和所需的反向链路反馈,这使得COMP的设计实用性和灵活性。 基于参考信号为每个分布式发射机和UE对测量诸如大规模衰落的信道元素,并且网络将该信息作为反向链路中的反馈接收。 COMP基于可用的反向链路容量进行反馈,确定了可承受的最大交叉干扰水平alphareq。 如果超过这个最大交叉干扰水平αphareq,则将地理上分离的UE划分成尽可能少的组,每个组中的UE分离,并且分配不同的时间/频率资源块。 分组完成的交叉干扰不超过alphareq的约束。
    • 9. 发明申请
    • PLANNING ALLOCATION OF TIME-FREQUENCY RESOURCES IN WIRELESS OFDMA COMMUNICATION SYSTEMS
    • 无线通信系统中时频分配的规划分配
    • US20130051273A1
    • 2013-02-28
    • US13695306
    • 2010-05-04
    • Peter Larsson
    • Peter Larsson
    • H04W24/00
    • H04L1/0019H04L1/0002H04L5/0007H04L5/006
    • A time-frequency resource allocation planner for planning allocation of time-frequency resources to sustain communication links from a common transmitter (TX) to multiple receivers (RX1, . . . , RXK) in a wireless OFDMA communication system includes a resource block selector configured to select a set (RBS) of time-frequency resource blocks (RB) for transmission of one packet for each communication link. A communication link quality measure provider is configured to determine a gain-to-interference-plus-noise ratio measure (Gk) for each communication link. A transmit power and transmit rate estimator, connected to the resource block selector and the communication link quality measure provider, is configured to jointly estimate, within the selected set of time-frequency resource blocks, transmit power (Pk) and transmit rate (Rk) of the packets as functions of determined gain-to-interference-plus-noise ratio measures, to at least approximately minimize expected transmitter energy consumption.
    • 用于在无线OFDMA通信系统中规划用于维持从公共发射机(TX)到多个接收机(RX1,...,RXK)的通信链路的时间 - 频率资源的分配的时间 - 频率资源分配规划器包括配置的资源块选择器 选择用于每个通信链路的一个分组的传输的时间 - 频率资源块(RB)的集合(RBS)。 通信链路质量测量提供者经配置以确定每个通信链路的增益与干扰加噪声比测量(Gk)。 连接到资源块选择器和通信链路质量测量提供者的发射功率和发射速率估计器被配置为在所选择的一组时间 - 频率资源块内共同估计发射功率(Pk)和传输速率(R k) 作为确定的增益与干扰加噪声比测量的函数,以至少大致最小化预期的发射机能量消耗。