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GLRT Approach for Robust Burst Packet Acquisition in Wireless Communications

机译:GLRT方法用于无线通信中的健壮突发分组获取

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摘要

Rapid detection of the arrival of a packet is challenging in burst wireless communications, where many parameters are unknown, such as signal power, noise power and carrier phase offset. Due to the unknown noise power, it is hard to set appropriate thresholds for the existing common detectors under the Neyman-Pearson criterion, which results in vulnerable acquisition and poor performance. In order to solve this problem, we propose the generalized likelihood-ratio test (GLRT) approach for sequence-aided packet acquisition in this paper. GLRT detection is formulated under multipath channel. Moreover, false alarm probability and detection probability of GLRT are derived and confirmed via simulations. Comparisons are conducted between GLRT and the common detectors, as well as GLRT under different channels. Results show that GLRT basically reveals more competitive and robust performance than the common detectors in practice, with only a little extra hardware cost by using the provided recursive computation structure. Additionally, it is shown that fading results in significant deterioration for GLRT; whereas GLRT has ability to exploit multipath diversity to reduce fading effect and improve acquisition performance.
机译:在突发无线通信中,快速检测数据包的到来具有挑战性,在突发无线通信中,许多参数是未知的,例如信号功率,噪声功率和载波相位偏移。由于未知的噪声功率,很难根据Neyman-Pearson准则为现有的普通检测器设置适当的阈值,这会导致获取漏洞和性能不佳。为了解决这一问题,本文提出了一种通用的似然比检验(GLRT)方法,用于序列辅助包的获取。 GLRT检测是在多路径通道下制定的。此外,通过仿真得出并确认了GLRT的虚警概率和检测概率。在GLRT和通用检测器以及不同通道下的GLRT之间进行比较。结果表明,GLRT基本上比实际检测器具有更具竞争力和更强大的性能,而使用提供的递归计算结构仅会增加一点硬件成本。另外,还表明,衰落会导致GLRT的严重恶化。而GLRT可以利用多径分集来降低衰落效应并提高采集性能。

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