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Performance Improvement of Binary Sensor-Based Statistical Space-Time Block Code Cooperative Diversity Using Limited Feedback

机译:基于有限反馈的基于二进制传感器的统计时空分组码合作分集的性能改进

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摘要

The statistical cooperative diversity, based on space-time block codes (statistical STBC cooperative diversity) is proposed for binary sensors by several authors. Since Alamouti's code is the only orthogonal code which achieves full diversity and full rate for two sensors, it is used in their works, and their achievable diversity order is 2. Instead of using Alamouti's code, we use extended cooperative space-time block coding (ECBSTBC) which achieves full diversity which is shown analytically and full rate for an arbitrary number of sensors if a limited feedback is available at the active sensors. Another method to increase diversity in cooperative communications is sensor (relay) selection. However, the sensor selection method may lead to the selection of the same (near) sensor for transmission over a long period causing the energy hole problem in sensor networks. The ECBSTBC which utilizes every sensor in sight thus distributes the energy consumption among active sensors and alleviates the energy hole problem. In addition, it can be shown with detailed simulations that the ECBSTBC outperforms both the statistical STBC cooperative diversity and the sensor selection schemes.
机译:几位作者针对二进制传感器提出了基于空时分组码的统计合作分集(统计STBC合作分集)。由于Alamouti的代码是唯一能为两个传感器实现全分集和全速率的正交码,因此在他们的工作中使用了Alamouti的代码,并且其可实现的分集阶数为2。我们不使用Alamouti的代码,而是使用扩展的协作时空块编码( ECBSTBC)(如果有源传感器提供有限的反馈,则实现了完整的多样性),对于任意数量的传感器,可以实现解析显示和全速率显示。在协作通信中增加分集的另一种方法是传感器(继电器)选择。但是,传感器选择方法可能会导致选择相同的(近)传感器进行长时间传输,从而导致传感器网络出现能量孔问题。因此,利用视线中每个传感器的ECBSTBC可以在主动传感器之间分配能量消耗,并缓解了能量孔问题。此外,可以通过详细的模拟显示ECBSTBC优于统计STBC协作分集和传感器选择方案。

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