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Combined radar-acoustic antenna for application in wind-power engineering

机译:用于风力电力工程中应用的组合雷达 - 声学天线

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Energy efficiency and fail-safety of modern wind turbines (WT) are largely determined by their ability to the temporal "tuning" under the spatial variability of the wind field. The paper examines the possibility of implementing the combined radar-acoustic antenna (CRAA), which is placed on the horizontal-axis wind turbine for the horizontal radio-acoustic wind sounding system (HRASS). The main antenna feature is the use of the developed antenna parametric working mode at acoustic waves, which ensures the high directivity of the acoustic probing radiation at the limited antenna aperture. The basic version of the CRAA design, intended for installation on the horizontal-axis wind turbine includes an ring multi-element acoustic radiator, in the interior of which the pulse-Doppler radar antenna unit is installed. The radio-acoustic hardware operates in accordance with the special quasicontinuous mode when using radio pulses of large spatial extent, together with short acoustic pulses
机译:现代风力涡轮机(WT)的能效和故障安全主要通过它们在风场的空间变异下的时间“调谐”的能力决定。本文介绍了实现组合雷达声天线(CRAA)的可能性,该天线(CRAA)放置在水平轴线风力涡轮机上,用于水平的无线电声风声系统(HRASS)。主天线特征是在声波处使用开发的天线参数工作模式,其确保有限天线孔处的声学探测辐射的高方向性。用于安装在水平轴风力涡轮机上的CRAA设计的基本版本包括环形多元件声散热器,在安装脉冲多普勒雷达天线单元的内部。当在使用大型空间程度的无线电脉冲和短声脉冲一起时,无线电声硬件根据特殊的QuasiConuly模式操作

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