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    • 2. 发明申请
    • BACK RAIL AND BACK RAIL ADAPTER FOR A FRAMELESS, MULTI-LAYERED SOLAR MODULE
    • 用于无框多层太阳能模块的后壁和后壁适配器
    • WO2011069840A2
    • 2011-06-16
    • PCT/EP2010068285
    • 2010-11-26
    • SOLARMARKT AGVOGT ROBERT
    • VOGT ROBERT
    • F24J2/52
    • F24J2/5254F24J2/5207F24J2/5211H02S20/23Y02B10/12Y02E10/47
    • The invention relates to a supporting back rail (10) for a frameless, multi-layered solar module (40) for placement in a carrier system (50), wherein the solar module (40) has a front face and a rear face (42), each preferably made of glass, between which an energy generating layer (74) is embedded; wherein the back rail (10) has an elongate main body (12), the geometrical length (LB) thereof substantially corresponding in the longitudinal direction (L) to a geometric length (Ls) of the rear face (42) of the solar module (40) from an outer edge (112) to an opposite outer edge (114) of the solar module (40), between which the main body (12) is attached to the rear face (42) of the solar module (40), preferably by means of an adhesive (80); wherein the back rail (10) further has at least one nose element (28) which connects to one of the longitudinal ends (30, 32) of the main body (10) in the longitudinal direction (L) and which extends around one of the outer edges (112) of the solar module (40) without contact when the back rail (10) is attached to the solar module (40); and wherein the nose element (28) has a first section (108) which extends in the longitudinal direction (L) and a second section (110) connected to the first section (108) which extends along the one outer edge (112) without contact such that the second section (110) protrudes (?H) over the front face of the solar module (40) in a height direction (H).
    • 支撑Backrail(10),用于插入一个无框多层太阳能模块(40)到载体系统(50),其特征在于,具有前侧和后侧(42),所述太阳能模块(40),每个优选由玻璃制成,之间其中发电 层(74)被嵌入; 其中,所述后轨(10)包括一个细长的主体(12),在纵向方向(L)的几何长度(LB)基本上是一个几何长度的太阳能模块(40)的从一个外边缘(112)的背面(42)的(LS)来 太阳能模块的相对的外边缘(114)(40)对应,被安装在主体(12),优选通过在所述太阳能模块(40)的背面(42)的粘合键(80)的装置,该装置之间; 其中,所述后轨(10)还包括至少一个凸耳元件(28),其在纵向端部中的一个(30,32)在纵向方向上的主体(10)(L)连接,并且其中,当Backrail(10)在太阳能模块上 (40)安装而不接触所述太阳能模块(40)的外边缘(112)中的一个周围; 并且其中所述具有第一部分(108)鼻构件(28)在纵向方向(L)延伸,并与没有接触连接到所述第二部分(110)的第一部分(108),从而沿一个外边缘(112 )延伸使得第二部分(110)在高度方向()(ΔH)上悬于太阳能模块(40)的前侧之上。
    • 6. 发明申请
    • MODEL ADAPTATION SYSTEM AND METHOD FOR SPEAKER RECOGNITION
    • 用于语音识别的模型适应系统和方法
    • WO2005055200A1
    • 2005-06-16
    • PCT/AU2004/001718
    • 2004-12-03
    • QUEENSLAND UNIVERSITY OF TECHNOLOGYPELECANOS, JasonVOGT, RobertSRIDHARAN, Subramanian
    • PELECANOS, JasonVOGT, RobertSRIDHARAN, Subramanian
    • G10L17/00
    • G10L17/04
    • A system and method for speaker recognition speaker modelling whereby prior speaker information is incorporated into the modelling process, utilising the maximum a posteriori (MAP) algorithm and extending it to contain prior Gaussian component correlation information. Firstly a background model (10) is estimated. Pooled acoustic reference data (11) relating to a specific demographic of speakers (population of interest) from a given total population is then trained via the Expectation Maximization (EM) algorithm (12) to produce a background model (13). The background model (13) is adapted utilising information from a plurality of reference speakers (21) in accordance with the Maximum A Posteriori (MAP) criterion (22). Utilizing MAP estimation technique, the reference speaker data and prior information obtained from the background model parameters are combined to produce a library of adapted speaker models, namely Gaussian Mixture Models (23).
    • 一种用于说话者识别扬声器建模的系统和方法,其中先前的说话者信息被并入到建模过程中,利用最大后验(MAP)算法并将其扩展为包含先前的高斯分量相关信息。 首先估计一个背景模型(10)。 然后通过期望最大化(EM)算法(12)训练与给定总人口的特定人群(兴趣人群)有关的汇集的声学参考数据(11)以产生背景模型(13)。 背景模型(13)根据最大后验(最大后验)(MAP)标准(22)利用来自多个参考扬声器(21)的信息。 利用MAP估计技术,将从背景模型参数获得的参考说话者数据和先验信息相结合,以产生适应的说话者模型库,即高斯混合模型(23)。