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    • 8. 发明申请
    • RADIO STATION FOR CLIENT LOCALIZATION IN MULTIPATH INDOOR ENVIRONMENT
    • WO2021032307A1
    • 2021-02-25
    • PCT/EP2019/072534
    • 2019-08-22
    • HUAWEI TECHNOLOGIES CO., LTD.KOBZANTSEV, Alexander
    • EZRI, DoronWEITZMAN, AviJIANG, XingfengFU, Jie
    • G01S3/74
    • The present disclosure relates to a radio station (300), in particular an access point, for client localization in a multipath indoor environment, wherein the radio station (300) comprises: a circular antenna array (201) comprising uniform circularly arranged antenna elements (202), wherein a first steering vector associated with the circular antenna array (201) represents relative phases of the antenna elements (202) of the circular antenna array (201), relatively to a reference point at an origin of the circular antenna array (201); and a processor (310) configured to: receive first input data (302) from the circular antenna array (201), wherein the first input data (302) comprises channel state information; transform the first input data (302) into second input data (312) using a transform (311) that transforms the first steering vector of the circular antenna array (201) into a second steering vector of a virtual linear antenna array comprising of uniform linearly arranged antenna elements, wherein the second steering vector of the virtual linear antenna array represents relative phases of the linearly arranged antenna elements, relatively to a reference antenna; and transform the second input data (312) into third input data (314) by using a transform (313) that transforms the second steering vector of the virtual linear antenna array into a third steering vector of a second virtual linear antenna array, comprising a larger number of antenna elements than the virtual linear antenna array, wherein the third steering vector of the second Virtual Antenna Array is a function of Angle Of Arrival and Time Of Flight; and determine an angle of arrival (316) of at least one path of the multipath indoor environment based on the third input data (314), by applying a two-dimensional MUSIC algorithm (315) over an Angle of Arrival and a Time of Flight domain over the third input data (314).