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A RAKE Combining Scheme for an Energy Detection Based Noncoherent OOK Receiver in UWB Impulse Radio Systems

机译:UWB脉冲无线电系统中基于能量检测的无量子康接收机的耙组合方案

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Ultra-wideband (UWB) impulse radio systems based on non-coherent on-off keying (OOK) energy detection are relatively simpler to implement than their coherent counterparts, because the strict synchronization requirements are relaxed. However, the design challenge is to set a hard decision threshold value after energy detection because the detected energy may vary due to multipath fading and inter-pulse interference (IPI). Moreover, to find and track the starting point of the integration for energy detection, a timing recovery block is needed. This block requires a fairly accurate phase-locked loop (PLL) circuit, the cost of which is prohibitive for a low cost and low power UWB device. In this paper, we propose an orthogonal code sequence with RAKE combining for an energy detection based noncoherent OOK receiver. It uses a RAKE combiner with soft despreading to combat the severe DPI. With this structure, threshold setting for conventional energy detector can be avoided and a larger integration timing offset can be tolerated. Simulation results show that the energy detection based OOK receiver using the proposed orthogonal code sequence and the RAKE combining scheme can improve packet error rate performance significantly in a dense multipath fading channel.
机译:基于非相干开关键控(OOK)能量检测的超宽带(UWB)脉冲无线电系统比其相干对应物更简单,因为严格的同步要求放宽。然而,设计挑战是在能量检测之后设定硬判决阈值,因为检测到的能量可能因多径衰落和脉冲间干扰(IPI)而变化。此外,要查找和跟踪集成的能量检测的起始点,需要一个定时恢复块。该块需要相当精确的锁相环(PLL)电路,其成本对于低成本和低功率UWB装置是禁止的。在本文中,我们提出了一种与基于能量检测的无量子的OOK接收器的耙组合的正交码序列。它使用耙组合器具有柔和的解扩,可以打击严重的DPI。利用这种结构,可以避免传统能量检测器的阈值设置,并且可以容忍更大的积分定时偏移。仿真结果表明,使用所提出的正交码序列和耙组合方案的能量检测可以在密集的多径衰落通道中显着提高分组错误率性能。

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