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Compressive Sampling based Multiple Symbol Differential Detection for UWB Communications

机译:用于UWB通信的基于压缩采样的多符号差分检测

摘要

Compressive sampling (CS) based multiple sym- bol differential detectors are proposed for impulse-radio ultra- wideband signaling, using the principles of generalized likelihood ratio tests. The CS based detectors correspond to two communica- tion scenarios. One, where the signaling is fully synchronized at the receiver and the other, where there exists a symbol level synchro- nization only. With the help of CS, the sampling rates are reduced much below the Nyquist rate to save on the high power consumed by the analog-to-digital converters. In stark contrast to the usual compressive sampling practices, the proposed detectors work on the compressed samples directly, thereby avoiding a complicated reconstruction step and resulting in a reduction of the implemen- tation complexity. To resolve the detection of multiple symbols, compressed sphere decoders are proposed as well, for both com- munication scenarios, which can further help to reduce the sys- tem complexity. Differential detection directly on the compressed symbols is generally marred by the requirement of an identical measurement process for every received symbol. Our proposed detectors are valid for scenarios where the measurement process is the same as well as where it is different for each received symbol.
机译:基于广义似然比测试的原理,提出了基于压缩采样(CS)的多个符号差分检测器用于脉冲无线电超宽带信令。基于CS的检测器对应于两种通信场景。一个是在接收机上使信令完全同步,另一个是仅存在符号级同步。在CS的帮助下,采样率降低到远远低于Nyquist率,以节省模数转换器消耗的高功率。与通常的压缩采样方法形成鲜明对比的是,建议的检测器直接对压缩样本进行工作,从而避免了复杂的重建步骤并降低了实现复杂性。为了解决多个符号的检测问题,还针对两种通信方案提出了压缩球解码器,这可以进一步帮助降低系统复杂性。通常,由于对每个接收到的符号都需要相同的测量过程,因此直接在压缩符号上进行差分检测会受到损害。我们建议的检测器适用于测量过程相同以及每个接收符号不同的场景。

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