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Active reflection absorption for a three dimensional multidirectional wave generator.

机译:三维多向波发生器的主动反射吸收。

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摘要

In order to implement an accurate system that allows for absorption of reflected waves impinging to a wave maker (Active Reflection Absorption), it was required to apply a method to estimate properly the direction of arrival of the waves that does it in the fastest way possible. Our wavemaker control system has been prepared to handle an algorithm provided by Bosch-Rexroth where the wave angle estimation is practically locked to a very narrow frequency band (spatial gain-mixer). The system was evaluated with physical tests in a 3D wave basin for different conditions of reflected waves arriving with an angle to the wavemaker front, and acceptable performance has been found for the 3D ARA mode. However, for certain conditions over-compensation or sub-compensation can develop resulting in a poor absorption. This is mainly related to not being able to determine accurately the direction from which the reflected waves travel towards the wavemaker.;The present work employed concepts found in the areas of antenna array signal processing and signal propagation, which were applied to this problem. This approach coupled naturally with our wavemaker system since it was prepared with 48 gages that can be employed in an array antenna fashion. A program was codified from an algorithm found in literature to calculate the Direction of Arrival (DOA) of the reflected waves. The focus for the testing of this program was with regular waves.;The tests were conducted to validate the program with different angles of incidence and show that for regular waves the program was able to detect accurately the DOA of these in as few as 5 snapshots, with a minimum of 7 gages used as the antenna input. With data obtained directly from the control system of our wavemaker using regular waves, the program was able to determine the DOA. The computational burden of the algorithm is not significant in the case of regular waves. A modification of the program is required to analyze the DOA of reflected irregular waves, which could increase the computational burden. Actual implementation of this program to our control system depends on cooperation with Bosch-Rexroth.
机译:为了实现允许吸收撞击到造波器的反射波的精确系统(主动反射吸收),需要采用一种方法来正确估计以最快的方式完成的波的到达方向。我们的波形发生器控制系统已经准备好处理由Bosch-Rexroth提供的算法,该算法的波角估计实际上锁定在非常窄的频带(空间增益混合器)上。在3D波浪盆中对系统进行了物理测试,评估了与波发生器正面成一定角度到达的反射波的不同条件,并且已经为3D ARA模式找到了可接受的性能。但是,在某些情况下,可能会发生过度补偿或次补偿,导致吸收不良。这主要与无法准确确定反射波向波发生器传播的方向有关。本工作采用了在天线阵列信号处理和信号传播领域中发现的概念,并将其应用于该问题。这种方法与我们的波形发生器系统自然地结合在一起,因为它是用48个量规准备的,它们可以以阵列天线的方式使用。根据文献中找到的算法对程序进行编码,以计算反射波的到达方向(DOA)。该程序的测试重点是规则波。进行测试以验证程序具有不同的入射角,并表明对于规则波,程序能够在最少5个快照中准确检测到这些DOA。 ,至少有7个量规用作天线输入。通过使用常规波直接从我们的波轮制造商的控制系统获得的数据,该程序能够确定DOA。在规则波的情况下,该算法的计算负担并不大。需要对程序进行修改以分析反射不规则波的DOA,这可能会增加计算负担。该程序在我们控制系统中的实际实施取决于与博世力士乐的合作。

著录项

  • 作者

    Castro, Oscar Cruz.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.;Engineering Marine and Ocean.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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