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An Improved Envelope Tracking SOA Amplifier for CO-OFDM Transmission by Using PSO

机译:使用PSO的用于CO-OFDM传输的改进的包络跟踪SOA放大器

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Envelope tracking (ET) is a popular technique for improving the power efficiency and linearity of radio-frequency power amplifiers. In this paper, we investigate its use in a Coherent-Optical OFDM transmitter using a Semiconductor Optical Amplifier (SOA) as a power booster. At a fixed bias current, such amplifier may lead to significant nonlinear effects, especially when the signal to be amplified has a non-constant envelope. Thanks to a bias current control scheme, an efficient linearization of the SOA can be achieved. It is shown that the bit error rate (BER) performance of a SOA-based CO-OFDM system can be largely improved by jointly tuning significant key parameters associated with the E T block. A particle swarm optimization (PSO) is applied for identifying the best operating conditions of the ET scheme, which is eventually combined with Peak to Average Power Ratio (P APR) reduction via nonlinear companding. Three distinct scenarios are proposed depending on the tuned parameters. An improvement of up to 8 dB is achieved at a BER of 10-3, for a 5 Gb/s QAM/CO-OFDM transmission.
机译:包络跟踪(ET)是一种用于提高射频功率放大器的功率效率和线性度的流行技术。在本文中,我们研究了它在相干光OFDM发射机中的使用,该发射机使用半导体光放大器(SOA)作为功率增强器。在固定的偏置电流下,这种放大器可能会导致明显的非线性效应,尤其是在要放大的信号具有非恒定包络的情况下。由于采用了偏置电流控制方案,因此可以实现SOA的有效线性化。结果表明,通过联合调整与E T块相关的重要关键参数,可以大大提高基于SOA的CO-OFDM系统的误码率(BER)性能。应用粒子群优化(PSO)来确定ET方案的最佳操作条件,并最终通过非线性压扩将其与峰均功率比(P APR)降低相结合。根据调整后的参数,提出了三种不同的方案。 BER为10时可实现高达8 dB的改善 -3 ,用于5 Gb / s QAM / CO-OFDM传输。

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