首页> 外文会议>Information Theory, 2009. CWIT 2009 >Blind Bit-Rate Detectors for variable-gain multiple-access systems in unknown Gaussian channel
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Blind Bit-Rate Detectors for variable-gain multiple-access systems in unknown Gaussian channel

机译:未知高斯信道中可变增益多址系统的盲比特率检测器

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We propose a robust maximum a posteriori probability (MAP) blind bit-rate detector (BBRD) for a fixed frame-length multiple access system which employs variable-gain receiver power and repetition encoding. this detector considers the rate detection (RD) as a multihypothesis test and maximizes the likelihood functions (LF)s to find the true bit-rate. Assuming that we have no knowledge about the receiver gain and the noise variance and using the maximum likelihood (ML) estimates of the unknown parameters in the LFs, the resulting GLR test fails, since a possible transmitted sequence of one hypothesis is also a possible transmitted sequence for another hypothesis. To overcome this problem, we propose a hybrid likelihood ratio test (HLRT) by assuming the information sequence as independent uniformly distributed random variables, averaging the LFs over them and then substitution of the ML estimates of the receiver gain and the noise variance in the resulting LFs. In addition, we propose a quasi-HLR detector, that substitutes the ML estimates of the unknown gain and noise variance from the original pdf in the resulting LFs after averaging over the information sequence. Simulation results compare the performances of the new BBRDs.
机译:我们为采用可变增益接收机功率和重复编码的固定帧长多址系统提出了鲁棒的最大后验概率(MAP)盲比特率检测器(BBRD)。该检测器将速率检测(RD)视为多假设检验,并最大化似然函数(LF)来找到真实的比特率。假设我们对接收器增益和噪声方差一无所知,并使用LF中未知参数的最大似然(ML)估计,则最终的GLR测试将失败,因为一个假设的可能传输序列也是可能的传输另一个假设的顺序。为了克服这个问题,我们提出了一种混合似然比检验(HLRT),方法是将信息序列假定为独立的均匀分布的随机变量,对它们上的LF求平均,然后替换接收器增益的ML估计值和结果中的噪声方差LF。此外,我们提出了一种准HLR检测器,该检测器在对信息序列求平均后,用所得pdf中的原始pdf替换未知增益和噪声方差的ML估计。仿真结果比较了新型BBRD的性能。

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