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A blind sequence detection and its application to digital mobile communication

机译:盲序列检测及其在数字移动通信中的应用

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A method of sequence detection without the knowledge of the channel response is proposed. The Viterbi algorithm is extended to a blind form by introducing a new branch-metric, defined as the minimum of the short time-average of the squared error (y/spl circ/k-yk)/sup 2/, where yk and y/spl circ/k are the received signal and its replica, respectively. All possible candidate sequences contained in the short time squared error are defined as trellis states, for which the short time squared error is minimized in respect to a variable of the unknown channel response. The proposed implicit blind sequence detection need not keep each variable after the branch metric is calculated. The consistency of the algorithm is justified by proving that a unique sequence is detected in noise free case. The proof is accomplished under condition that the period of the time-average is longer than the channel response. If the additive white Gaussian noise is assumed, the short time squared errors are minimized beyond the desired minimum by the standard Viterbi algorithm using an apriori known channel response. We call this phenomenon over-minimization. The over-minimization is a major reason of the unavoidable error rate degradation in the blind receiver. An objective of this paper is to establish blind sequence detection for digital mobile communication. Provided the channel response can be regarded as time-invariant during the period of the short time-average of the squared error, the blind sequence detection keeps the same performance as in time-invariant case. In order to improve the error rate performance, an algorithm based on the fractional sampling scheme is introduced. Several error rate performances and behaviors of error events are investigated by computer simulation.
机译:提出了一种不知道信道响应的序列检测方法。通过引入新的分支度量将维特比算法扩展为盲形式,该分支度量定义为平方误差的短时间平均最小值(y / spl circ / k-yk)/ sup 2 /,其中yk和y / spl circ / k分别是接收到的信号及其副本。短时平方误差中包含的所有可能的候选序列都被定义为网格状态,相对于未知信道响应的变量,短时平方误差被最小化。所提出的隐式盲序列检测不需要在计算分支度量后保留每个变量。通过证明在无噪声情况下检测到唯一序列,证明了算法的一致性。在时间平均周期长于信道响应的条件下完成证明。如果假定了加性高斯白噪声,则标准的维特比算法使用先验的已知信道响应将短时平方误差最小化到超出所需的最小值。我们称这种现象为最小化。过度最小化是盲接收器中不可避免的错误率下降的主要原因。本文的目的是建立用于数字移动通信的盲序列检测。如果在平方误差的短时间平均内可以将信道响应视为时不变,则盲序列检测将保持与时不变情况下相同的性能。为了提高误码率性能,提出了一种基于分数采样方案的算法。通过计算机仿真研究了几种错误率性能和错误事件的行为。

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