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    • 6. 发明授权
    • Partially coherent constellations for multiple-antenna systems
    • 多天线系统的部分相干星座
    • US07889804B2
    • 2011-02-15
    • US10671346
    • 2003-09-24
    • Mohammad Jaber BorranAshutosh SabharwalBehnaam AazhangPrabodh Varshney
    • Mohammad Jaber BorranAshutosh SabharwalBehnaam AazhangPrabodh Varshney
    • H04B7/02
    • H04L25/0202H04L1/0612H04L27/3427
    • A signal constellation for a multiple input/multiple output (MIMO) communication system when channel knowledge at the receiver is imperfect includes at least two (n−1)-dimensional sub-constellations of points that together form an n-dimensional constellation, the number n representing real dimensions and n=2M where M is the number of transmit antennas. The n-dimensional spherical constellation may define a single sphere or a plurality of concentric subset spheres, and points between subsets are separated by a Kullback-Leibler distance rather than a Euclidian distance. Each sphere has sub-constellations that preferably are arranged in symmetric pairs that define equal numbers of points that lie in parallel planes, to allow recursive construction that minimizes computational complexity. An appropriate constellation may be chosen by ceasing a search once the optimum minimum distance stops increasing as a number of the concentric levels increases.
    • 当接收机的信道知识不完美时,用于多输入/多输出(MIMO)通信系统的信号星座包括一起形成n维星座的点的至少两(n-1)维子星座, n表示实际尺寸,n = 2M,其中M是发射天线的数量。 n维球形星座可以定义单个球体或多个同心子集球体,并且子集之间的点由Kullback-Leibler距离而不是欧几里得距离分开。 每个球体具有优选以对称对布置的子星座,其限定位于平行平面中的相等数量的点,以允许最小化计算复杂度的递归构造。 一旦适当的星座可以通过停止搜索,一旦最佳最小距离随着同心级数的增加而停止增加。