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Channel characterization including path loss and Doppler effects with sea reflections for mobile radio propagation over sea at 2 GHz

机译:信道表征,包括路径损耗和具有海反射的多普勒效应,用于2 GHz海上移动无线传播

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Maritime communication plays an important role in marine activities, but insufficient knowledge of radio channel characteristics over sea limits the development of wideband wireless communication systems for maritime applications. Therefore a land-to-ship (L2S) radio channel measurement assignment has been performed in Trondheim, Norway. In this paper we have focused open sea propagation environments, and results of the channel characterization from measurements are presented, such as path-loss, channel correlation and Doppler effects due to sea reflections, along with the reflection coefficient of the sea surface. The received signal level (RSL) has been compared to the Okumura-Hata model, the COST 231-Hata model and the ITU-R P.1546–2 model, and it has been found that the ITU-R model for open cold sea corresponding to field-strength value exceeded at 50% of the locations fits the measurement results best. By using two receiver antennas with 1.865 m spacing, partly channel correlation has been revealed when the distance between the transmitter (TX) and receiver (RX) is within 2 km, while the two channels are found to be highly correlated when the boat is further away from the shore. When the distance between the TX and RX is within the range 3 km to 12 km, a fading beat frequency is found to be 0.16 Hz, i.e. about 0.16 Hz Doppler shift caused by the sea movement. Finally, the reflection coefficient of the sea surface turns out to be about 0.11 in the same range, which does not comply with the Kirchhoff theory for effective reflection coefficient.
机译:海上通信在海上活动中起着重要作用,但是对海上无线电信道特性的了解不足限制了海上应用宽带无线通信系统的发展。因此,已经在挪威特隆赫姆进行了陆到船(L2S)无线电信道测量任务。在本文中,我们集中研究了公海传播环境,并给出了测量结果中的信道表征结果,例如路径损耗,信道相关性和由于海反射引起的多普勒效应,以及海面反射系数。已将接收信号电平(RSL)与Okumura-Hata模型,COST 231-Hata模型和ITU-R P.1546–2模型进行了比较,并且发现ITU-R模型适用于寒海对应于在50%的位置超过场强值的值最适合测量结果。通过使用两个间隔为1.865 m的接收器天线,当发送器(TX)与接收器(RX)之间的距离在2 km之内时,部分信道相关性已被揭示,而当船只离船较远时,发现这两个信道具有高度相关性远离海岸。当TX和RX之间的距离在3公里至12公里的范围内时,衰落的拍频被发现为0.16Hz,即由海运动引起的约0.16Hz的多普勒频移。最后,在相同范围内,海面的反射系数约为0.11,这与有效反射系数的Kirchhoff理论不符。

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