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WAVE DIRECTION CALCULATING METHOD OF BUOY-TYPE WAVE HEIGHT METER

机译:浮子式波高计的波向计算方法

摘要

PPROBLEM TO BE SOLVED: To solve a problem in wave direction measurement by a GPS buoy wherein a wave direction cannot be stably measured at 360 by the covariance of the horizontal moving speed of the buoy and the vertical position of the buoy due to noncoincidence between the motion of water particles and the motion of the buoy. PSOLUTION: The method comprises carrying out wave direction calculation by dividing it into two calculations and combining the results thereof. First calculation is to determine the vibrating (reciprocating) direction (180 wave direction) of water particles. The vibrating direction of water particles can be determined by a method of carrying out coordinate conversion and determining the direction in which primary or secondary moment (power) is maximum. Second calculation is to determine the traveling direction of wave and the 360 wave direction. In the case of the buoy type, the 360 wave direction value of water particles by covariance is not stable but its code has stability. The code of the covariance value in the 180 wave direction obtained in the first method is obtained to determine the traveling direction. The stable 360 wave direction measurement of the buoy type is attained by utilizing the advantages of the two methods. PCOPYRIGHT: (C)2009,JPO&INPIT
机译:

要解决的问题:解决GPS浮标在波浪方向测量中的问题,其中由于浮标的水平移动速度和浮标的垂直位置的协方差,在360°无法稳定地测量波的方向水粒子运动与浮标运动之间的不一致。

解决方案:该方法包括通过将波方向分为两个计算并组合其结果来进行波向计算。首先计算是确定水粒子的振动(往复)方向(180波方向)。水颗粒的振动方向可以通过进行坐标转换并确定一次或二次力矩(功率)最大的方向的方法来确定。第二个计算是确定波的传播方向和360度波的方向。在浮标型的情况下,通过协方差的水粒子的360度波方向值不稳定,但是其代码具有稳定性。获得在第一方法中获得的在180波方向上的协方差值的代码,以确定行进方向。利用这两种方法的优点,可以实现浮标类型的稳定的360度波向测量。

版权:(C)2009,日本特许厅&INPIT

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