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Efficient and robust detection of GFSK signals under dispersive channel, modulation index, and carrier frequency offset conditions

机译:在色散信道,调制指数和载波频率偏移条件下高效,强大地检测GFSK信号

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摘要

Gaussian frequency shift keying is the modulation scheme specified for Bluetooth. Signal adversities typical in Bluetooth networks include AWGN, multipath propagation, carrier frequency, and modulation index offsets. In our effort to realise a robust but efficient Bluetooth receiver, we adopt a high-performance matched-filter-based detector, which is near optimal in AWGN, but requires a prohibitively costly filter bank for processing of K bits worth of the received signal. However, through filtering over a single bit period and performing phase propagation of intermediate results over successive single-bit stages, we eliminate redundancy involved in providing the matched filter outputs and reduce its complexity by up to 90% (for K = 9). The constant modulus signal characteristic and the potential for carrier frequency offsets make the constant modulus algorithm (CMA) suitable for channel equalisation, and we demonstrate its effectiveness in this paper. We also introduce a stochastic gradient-based algorithm for carrier frequency offset correction, and show that the relative rotation between successive intermediate filter outputs enables us to detect and correct offsets in modulation index.
机译:高斯频移键控是为蓝牙指定的调制方案。蓝牙网络中典型的信号逆境包括AWGN,多径传播,载波频率和调制指数偏移。为了实现功能强大但高效的蓝牙接收器,我们采用了基于匹配滤波器的高性能检测器,该检测器在AWGN中几乎是最佳选择,但需要昂贵的滤波器组来处理K位接收信号。但是,通过在单个位周期内进行滤波并在连续的单个位级上执行中间结果的相位传播,我们消除了提供匹配滤波器输出所涉及的冗余,并将其复杂度降低了90%(对于K = 9)。恒定模数信号特性和潜在的载波频率偏移使得恒定模数算法(CMA)适用于信道均衡,我们在本文中证明了其有效性。我们还介绍了一种基于随机梯度的载波频率偏移校正算法,并证明了连续中间滤波器输出之间的相对旋转使我们能够检测和校正调制指数中的偏移。

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  • 年度 2005
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  • 正文语种 {"code":"en","name":"English","id":9}
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