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Performance Analysis of Single Carrier Coherent and Noncoherent Modulation under I/Q Imbalance

机译:I / Q不平衡下单载波相干和非相干调制的性能分析

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In-phase/quadrature-phase Imbalance (IQI) is considered a major performance-limiting impairment in direct-conversion transceivers. Its effects become even more pronounced at higher carrier frequencies such as the millimeter-wave frequency bands considered for 5G systems. In this work, we quantify the effects of IQI on the performance of different modulations under multipath fading channels. This is realized by developing a comprehensive framework for the symbol error rate (SER) analysis of coherent phase shift keying (PSK), noncoherent differential phase shift keying (DPSK) and noncoherent frequency shift keying (FSK) under IQI effects. In this context, the moment generating function of the signal-to-interference-plus-noise-ratio is first derived for single-carrier systems suffering from transmitter (TX) IQI only, receiver (RX) IQI only and joint TX/RX IQI. Capitalizing on this, we derive analytic expressions for the SER of the different modulation schemes considered. These expressions are corroborated with simulation results and they provide insights into the dependence of IQI on the system parameters. We further demonstrate that, while in some cases, IQI can cause a slight degradation of the SER performance and, hence, it can be neglected, in other cases it should be compensated in order to achieve a reliable communication link.
机译:在直接转换收发器中,同相/正交相位失衡(IQI)被认为是主要的性能限制损害。它的影响在更高的载波频率(例如为5G系统考虑的毫米波频段)上变得更加明显。在这项工作中,我们量化了IQI对多径衰落信道下不同调制性能的影响。这是通过为IQI效应下的相干相移键控(PSK),非相干差分相移键控(DPSK)和非相干频移键控(FSK)的符号错误率(SER)分析开发一个综合框架而实现的。在这种情况下,首先针对仅受发射机(TX)IQI,仅受接收机(RX)IQI和联合TX / RX IQI影响的单载波系统,得出信号与干扰加噪声比的矩生成函数。 。利用这一点,我们得出了所考虑的不同调制方案的SER的解析表达式。这些表达式与仿真结果相符,它们提供了有关IQI对系统参数的依赖性的见解。我们进一步证明,尽管在某些情况下,IQI可能会导致SER性能略有下降,因此可以忽略不计,但在其他情况下,应该对其进行补偿以实现可靠的通信链路。

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