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Adaptive pilot based modulation identification and channel estimation for OFDM systems

机译:OFDM系统中基于自适应导频的调制识别和信道估计

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Adaptive modulation is an important method for effective usage of channel capacity in Orthogonal Frequency Division Multiplexing (OFDM) systems. Modulation identification algorithms unnecessitate the need of transferring the modulation information to the receiver, thereby these algorithms are very effective methods to increase the channel capacity. However, in practice, separate two sets of pilot symbols are used to identify the modulation type and to estimate the channel impulse response. In this paper, we propose one set of pilot symbols to get information about the channel and the modulation type, jointly. These pilots are named as “adaptive pilots” because they are related with the modulation type. Monte Carlo simulations are performed to observe the performance of the proposed adaptive pilot method and to compare with previously presented algorithm given in [1]. Simulation results indicate that the proposed adaptive pilots successfully help to identify correctly the modulation type without affecting the performance of the channel estimation.
机译:自适应调制是有效使用正交频分复用(OFDM)系统中信道容量的重要方法。调制识别算法不必要需要将调制信息传送到接收器,从而这些算法是增加信道容量的非常有效的方法。然而,在实践中,分离两组导频符号用于识别调制类型并估计信道脉冲响应。在本文中,我们提出了一组导频符号,以共同获取有关频道和调制类型的信息。这些导频被命名为“自适应导频”,因为它们与调制类型有关。进行蒙特卡罗模拟以观察所提出的自适应导频方法的性能,并与[1]中先前所呈现的算法进行比较。仿真结果表明,所提出的自适应导频成功有助于正确识别调制类型而不影响信道估计的性能。

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