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Power amplifier non-linearity treatment with distorted constellation estimation and demodulation for 60 GHz single-carrier frequency-domain equalisation transmission

机译:失真星座图估计和解调的功率放大器非线性处理,用于60 GHz单载波频域均衡传输

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摘要

Power amplifier (PA) non-linearity is extremely significant for 60 GHz millimetre-wave communications, which distorts signal constellation seriously. In dealing with this problem, the commonly used digital predistortion (DPD) becomes unaffordable for 60 GHz systems in both power consumption and price. This study proposes to handle PA non-linearity with distorted constellation (DCS) estimation and demodulation for 60 GHz systems with single-carrier frequency-domain equalisation transmission, which has a low implementation cost. Employing the least-square (LS) algorithm, the DCS is estimated both before and after equalisation, where LS after equalisation has a lower computational complexity than LS before equalisation. Subsequently, the estimated DCS, instead of the standard constellation, is used as a criterion for demodulation, which is shown to achieve a significant improvement on the symbol-error-rate (SER) performance, especially when the non-linear distortion is severe. Moreover, compared with DPD, the proposed method achieves a better SER performance and behaves more robustly in the low range of input power back-off (IBO), whereas achieving a close SER performance in the high-IBO range.
机译:功率放大器(PA)的非线性对于60 GHz毫米波通信极为重要,它严重扭曲了信号星座图。为了解决这个问题,在60 GHz系统上,无论是在功耗还是价格上,都无法承受常用的数字预失真(DPD)。这项研究提出了使用单载波频域均衡传输的60 GHz系统,通过失真星座图(DCS)估计和解调来处理PA非线性问题,其实现成本较低。使用最小二乘(LS)算法,在均衡之前和之后都估计DCS,其中均衡之后的LS的计算复杂度比均衡之前的LS低。随后,将估计的DCS而不是标准星座图用作解调的标准,这表明可以显着提高符号错误率(SER)性能,特别是在非线性失真严重的情况下。此外,与DPD相比,所提出的方法在较低的输入功率回退(IBO)范围内具有更好的SER性能,并且性能更强健,而在高IBO范围内则具有接近的SER性能。

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