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Concurrent Ku-band satellite beacon measurements along adjacent low-elevation angle paths under two configurations

机译:在两种配置下,沿相邻低仰角路径的并发Ku波段卫星信标测量

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Low elevation angle Ku-band satellite propagation experiments have shown tropospheric scintillations to be system performance limiting. At elevation angles less than 5 degrees scintillations can also limit system availability. In addition an antenna height diversity experiment demonstrated a lack of correlation between scintillations on closely spaced low elevation slant paths. This lack of correlation has significant interference implications for adjacent satellites if uplink power control (ULPC) is employed to counter scintillation effects on the uplink. The experimental study investigated (i) the potential for mutual interference between adjacent low elevation satellites due to scintillation and (ii) the potential advantage of horizontal antenna diversity in alleviating system scintillation degradations.
机译:低仰角Ku波段卫星传播实验表明,对流层闪烁是系统性能的限制。在仰角小于5度时,闪烁也会限制系统的可用性。另外,天线高度分集实验表明,在紧密间隔的低海拔倾斜路径上的闪烁之间缺乏相关性。如果采用上行链路功率控制(ULPC)来抵消对上行链路的闪烁影响,则这种缺乏相关性会对相邻卫星产生重大干扰影响。实验研究调查了(i)由于闪烁引起的相邻低海拔卫星之间相互干扰的可能性,以及(ii)水平天线分集在减轻系统闪烁恶化方面的潜在优势。

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