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首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Movement of Equivalent Scatterers in Geometry-Based Stochastic Channel Models
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Movement of Equivalent Scatterers in Geometry-Based Stochastic Channel Models

机译:基于几何的随机通道模型中的等效散射体运动

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摘要

Channel models are widely used to test receiver algorithms and, therefore, should model the propagation behavior as completely as possible. A promising type of channel model is the geometry-based stochastic channel model (GSCM), which represents the propagation channel by placing equivalent scatterers (ES) within a simulated geometry. Each of these ES is associated to a propagation path between the transmitter and the receiver. The propagation length of a modeled path can be calculated in a straightforward manner knowing the ES, the transmitter, and receiver locations by simple distance calculations. If the receiver is moving, an ES may change its location in order to model a propagation path accurately. However, this movement has not been sufficiently taken into account so far. Within this contribution, we show that the movement of an ES lies on a trajectory described by an ellipse or hyperbola when the receiver is in motion. Based on this derivation, a modeling approach for a propagation path resulting from multiple reflections is given, where at least one reflector is geometrically static in its position. Our description supports the simulation of an arbitrary receiver movement. Finally, we provide an example from an outdoor-to-indoor measurement campaign that confirms the movement of the ES.
机译:信道模型广泛用于测试接收器算法,因此,应尽可能完整地模拟传播行为。一种有前途的信道模型是基于几何的随机信道模型(GSCM),该模型通过在等效几何形状内放置等效散射体(ES)来表示传播信道。这些ES中的每一个都与发射机和接收机之间的传播路径相关。可以通过简单的距离计算以已知ES,发射器和接收器位置的简单方式来计算建模路径的传播长度。如果接收器正在移动,则ES可以更改其位置,以便准确地对传播路径进行建模。但是,到目前为止,尚未充分考虑到这种运动。在此贡献范围内,我们表明,当接收器运动时,ES的运动位于椭圆或双曲线所描述的轨迹上。基于该推导,给出了由多次反射产生的传播路径的建模方法,其中至少一个反射器在其位置上是几何静态的。我们的描述支持模拟任意接收器的运动。最后,我们提供了一个从室外到室内进行测量的示例,该示例可以确认ES的运动。

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