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OFDMA Initial Ranging for IEEE 802.16e Based on Time-domain and Frequency-domain Approaches

机译:基于时域和频域方法的IEEE 802.16e OFDMA初始测距

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摘要

In this paper, we propose and compare two ranging methods for the OFDMA uplink system prescribed by IEEE 802.16e, including multi-user ranging code detection, timing, frequency and power synchronization. In Method I, timing offset estimation is based on the auto-correlation and cross-correlation in tune-domain, and an adaptive threshold is defined to detect transmitted ranging codes. The time-domain algorithm has a similar counterpart in the frequency-domain described in Method II, which is more accurate since it bears less interference by extracting the sub-carriers used for ranging from data sub-carriers. Moreover, Method II needs fewer computations since it shares the FFT calculations with the data demodulation process. However, Method I has the advantage of a flexible correlation window size. Simulations confirm that both methods perform well even in the condition of low SNR values and several simultaneous ranging users. To obtain the 90% probability of successful detection, Method II requires an SNR about 3.5dB less than Method I. Simulations also show that both methods are better, compared with some existing methods.
机译:在本文中,我们提出并比较了IEEE 802.16e规定的OFDMA上行链路系统的两种测距方法,包括多用户测距代码检测,定时,频率和功率同步。在方法I中,定时偏移估计基于调谐域中的自相关和互相关,并且定义了自适应阈值以检测所发送的测距码。时域算法在方法II中描述的频域中具有相似的对应项,因此更为精确,因为它通过从数据子载波中提取用于测距的子载波而受到的干扰较小。此外,方法II需要较少的计算,因为它与数据解调过程共享FFT计算。但是,方法I具有相关窗口大小灵活的优点。仿真证实,即使在低SNR值和多个同时测距用户的情况下,两种方法也能很好地执行。为了获得90%的成功检测概率,方法II要求的SNR比方法I低约3.5dB。仿真还表明,与某些现有方法相比,这两种方法都更好。

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