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Closed loop power control with space diversity to improve performance of low elevation angle users in HAPs-CDMA communication channel

机译:闭环功率控制具有空间多样性,以提高HAPS-CDMA通信通道中低海拔角度用户的性能

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This paper proposes variable step closed loop power control algorithm combined with space diversity to improve the performance of High Altitude Platforms (HAPs) communication at low elevation angle using Code Division Multiple Access (CDMA). In this contribution, we first develop HAPs channel model which is derived from experimental measurement. From our experiment, we found HAPs channel characteristic can be modeled as a Ricean distribution because the presence of line of sight path. Different elevation angle resulting different K factor value. This value is then used in Signal to Interference Ratio (SIR) based closed loop power control evaluation. The variable step algorithm is simulated under various elevation angles with different speed of mobile user. The performance is presented in terms of user elevation angle, user speed, step size and space diversity order. We found that the performance of variable step closed-loop power control less effective at low elevation angle. However our simulation shows that space diversity is able to improve the performance of closed loop power control for HAPs channel at low elevation angle.
机译:本文提出了可变步长闭环功率控制算法与空间多样性相结合,通过码分多址(CDMA)来提高低仰角高度平台(HAPS)通信的性能。在这一贡献中,我们首先开发源自实验测量的HAPS频道模型。从我们的实验来看,我们发现HAPS频道特性可以被建模为Ricean分配,因为存在线路路径。不同的仰角导致不同的k因子值。然后将该值用于信号与干扰比(SIR)的闭环功率控制评估。在具有不同移动用户速度的各种高度角度下模拟可变步长算法。在用户高程角度,用户速度,步长和空间分集顺序方面呈现性能。我们发现,在低升高角度下可变步长闭环功率控制的性能较低。然而,我们的仿真表明,空间分集能够在低仰角处提高HAPS通道闭环功率控制的性能。

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