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    • 2. 发明公开
    • ACOUSTIC WIND MEASUREMENT
    • EP4390406A1
    • 2024-06-26
    • EP23208444.2
    • 2023-11-08
    • Vaisala, OYJ
    • Keitaanniemi, JoonasMäkinen, SeppoFogelberg, Tuomas
    • G01P5/24
    • G01P5/245
    • According to an example embodiment, a wind measurement apparatus (100) is provided, the apparatus (100) comprising: a base portion (110) and a cover portion (120) arranged at a distance from each other; an arrangement of N transducers (112) disposed on a cover-portion-facing side of the base portion (110) in respective positions that serve as respective vertices of a convex regular polygon of order N, where N is at least three; and a reflector assembly (122, 222) arranged on a base-portion-facing side of the cover portion (120), wherein the reflector assembly (122, 222) is divided into N substantially identical concave reflector portions (122-n), 222-n) that are provided as respective recesses on the base-portion-facing surface of the cover portion (120), wherein the reflector assembly (122, 222) and the base portion (110) are disposed with respect to each other such that a center point of the reflector assembly (122, 222) is spatially aligned with a center point of said convex regular polygon and that each of the N transducers (112) is spatially aligned with a respective boundary between two adjacent reflector portions (122-n, 222-n), and wherein each transducer (112-n) is arranged to: transmit a respective ultrasonic measurement signal in a respective transmitter beam, TX beam, towards the reflector assembly (122, 222) such that the respective TX beam meets the two adjacent reflector portions (122-n, 222-n) on opposite sides of the respective boundary with which the respective transducer (112-n) is spatially aligned, and receive, via said two adjacent reflector portions (122-n, 222-n), respective partial reflections of the respective TX beams originating from those ones of the N transducers (112) that are adjacent to the respective transducer (112-n).
    • 4. 发明公开
    • AUTOMATED BALLOON LAUNCHING SYSTEM AND METHOD FOR LAUNCHING
    • AUTOMATISIERSES BALLONSTARTSYSTEM UND VERFAHREN ZUM STARTEN
    • EP3102969A4
    • 2017-09-06
    • EP15746021
    • 2015-02-06
    • VAISALA OYJ
    • LEINONEN ISMOSAARI TUOMO
    • G01W1/08B64B1/00B64B1/40B64B1/58
    • B64B1/005B64B1/40B64B1/62G01W1/08
    • According to an example aspect of the present invention, there is provided an automated balloon launching system for launching at least one balloon such as a meteorological balloon or a radiosonde. The system comprises a container and a storage arranged in the container for storing at least one box at a defined storage position p=1, 2, . . . , n. The at least one box includes a balloon and a sonde. A release silo is arranged at least partially on top of or above and adjacent to the container for sheltering the balloon during inflation. A x-, y- and z-manipulator is arranged in the container for removing a specific box from one of the defined storage positions p=1, 2, . . . , n, and for subsequent feeding the release silo with the specific box. The present invention also concerns a method for launching at least one balloon such as a meteorological balloon or a radiosonde.
    • 根据本发明的示例性方面,提供了一种用于发射至少一个气球的气球发射系统,例如气象气球或无线电探空仪。 该系统包括容器和布置在容器中的存储器,用于在限定的存储位置p = 1,2,...处存储至少一个盒子。 。 。 ,n。 至少一个盒子包括气球和探测器。 释放筒仓至少部分地布置在容器的顶部上方或上方并且与容器相邻,用于在充气期间遮蔽球囊。 在容器中布置一个x,y和z操纵器,用于从定义的存储位置p = 1,2,...中的一个移除特定的盒子。 。 。 ,n,并随后将该释放筒仓送入特定的箱子。 本发明还涉及用于发射至少一个气球的方法,例如气象气球或无线电探空仪。