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Accurate Bit-Error-Rate Analysis of Bandlimited Cooperative OSTBC Networks Under Timing Synchronization Errors

机译:定时同步误差下带限协作OSTBC网络的精确误码率分析

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The distributed multiple-input–multiple-output (MIMO) system (e.g., intercluster communication via cooperating nodes in a wireless sensor network) is a topic of emerging interest. Many previous studies have assumed perfect synchronization among cooperating nodes and identically distributed communication links. Such assumptions are rarely valid in practical operating scenarios. This paper develops an analytical framework for computing the average bit error rate (ABER) of a distributed multiple-input–single-output (MISO) space-time-coded system with binary phase shift keying (BPSK) modulation affected by timing synchronization errors. The cooperating nodes use data pulse-shaping filters for transmission over generalized frequency-nonselective fading channels. As an illustrative example, the performance evaluation of a 2 $times$ 1 MISO system that uses distributed orthogonal space-time block coding (OSTBC) is presented, although this approach can be readily extended to analyze distributed transmit diversity with a larger number of cooperating nodes. We show that under certain conditions, a distributed MISO system with time synchronization errors can still outperform a perfectly synchronized single-input–single-output (SISO) system.
机译:分布式多输入多输出(MIMO)系统(例如,通过无线传感器网络中的协作节点进行集群间通信)是一个新兴的话题。先前的许多研究都假设协作节点和相同分布的通信链路之间可以实现完美的同步。这样的假设在实际操作场景中很少有效。本文开发了一种分析框架,用于计算受时序同步误差影响的具有二进制相移键控(BPSK)调制的分布式多输入单输出(MISO)时空编码系统的平均误码率(ABER)。协作节点使用数据脉冲整形滤波器在广义的频率非选择性衰落信道上进行传输。作为说明性示例,尽管使用了大量协作的方法可以很容易地扩展为分析分布式发射分集,但该方法却给出了使用分布式正交空时分组编码(OSTBC)的2 x 1 MISO系统的性能评估。节点。我们证明,在某些情况下,具有时间同步错误的分布式MISO系统仍然可以胜过完全同步的单输入单输出(SISO)系统。

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