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Channel characteristics of MIMO–WLAN communications at 60 GHz for various corridors

机译:各种走廊在60 GHz下的MIMO–WLAN通信的信道特性

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A comparison of 4 × 4 multiple-input multiple-output wireless local area network wireless communication characteristics for six different geometrical shapes is investigated. These six shapes include the straight shape corridor with rectangular cross section, the straight shape corridor with arched cross section, the curved shape corridor with rectangular cross section, the curved shape corridor with arched cross section, the L-shape corridor, and the T-shape corridor. The impulse responses of these corridors are computed by applying shooting and bouncing ray/image (SBR/Image) techniques along with inverse Fourier transform. By using the impulse response of these multipath channels, the mean excess delay, root mean square (RMS) delay spread for these six corridors can be obtained. Numerical results show that the capacity for the rectangular cross section corridors is smaller than those for the arched cross section corridors regardless of the shapes. And the RMS delay spreads for the T-and the L-shape corridors are greater than the other corridors.
机译:研究了六个不同几何形状的4×4多输入多输出无线局域网无线通信特性的比较。这六个形状包括具有矩形横截面的直线形走廊,具有弓形横截面的直线形走廊,具有矩形横截面的弯曲形走廊,具有弓形截面的弯曲形走廊,L形走廊和T-形状的走廊。这些走廊的脉冲响应是通过应用拍摄和反射射线/图像(SBR / Image)技术以及傅立叶逆变换来计算的。通过使用这些多径通道的脉冲响应,可以获得这六个通道的平均超额延迟,均方根(RMS)延迟扩展。数值结果表明,无论形状如何,矩形横截面走廊的通行能力均小于拱形横截面走廊的通行能力。 T型和L型走廊的RMS延迟扩展大于其他走廊。

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