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Hybrid Constellations for Dual-Polarized Wireless Communications

机译:用于双极化无线通信的混合星座

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This paper considers constellation designs for $2imes 2$ systems with a coherent dual-polarized antenna configuration. Such an architecture enables a four dimensional (4D) signal space that exploits polarization, and this paper considers hybrid constellations formed as a combination of amplitude/phase states and polarization states. For coherent detection, phase shift keying (PSK) is combined with polarization shift keying (PolSK) to produce constant-power PSK+PolSK constellations that consistently outperform PSK+PSK. Next, quadrature amplitude modulation (QAM) and amplitude phase shift keying (APSK) are combined with PolSK to construct hybrid QAM+PolSK and APSK+PolSK constellations, and constrained capacity results indicate the viability of coded modulation based on these signal spaces. For non-coherent detection, differential PSK (DPSK) is combined with PolSK to yield DPSK+PolSK signaling that does not require phase alignment at the receiver and outperforms DPSK+DPSK, both with and without the adverse effect of carrier frequency offset and symbol time offset. The methods are verified in over-the-air testing with universal software radio peripherals (USRPs) integrated in a dual-polarized testbed. Error performances of all proposed 4D hybrid constellations in an OFDM framework are analyzed under both quasi-AWGN and multipath fading scenarios.
机译:本文考虑了2美元的星座设计,2美元具有相干双极化天线配置。这种架构使得能够利用极化的四维(4D)信号空间,并且本文认为混合星座形成为幅度/相位状态和偏振状态的组合。对于相干检测,相移键控(PSK)与偏振移键(POLSK)组合以产生始终优于PSK + PSK的恒定功率PSK + POLSK星座。接下来,正交幅度调制(QAM)和幅度相移键控(APSK)与POLSK组合以构建混合QAM + POLSK和APSK + POLSK星座,并且约束容量结果指示基于这些信号空间的编码调制的可行性。对于非相干检测,差分PSK(DPSK)与POLSK组合以产生DPSK + POLSK信令,其在接收器处不需要相位对准,并且在载波频率偏移和符号时间的不利影响中均不需要DPSK + DPSK。抵消。通过集成在双极化试验用的通用软件无线电外围设备(USRP)的通用软件无线电外围设备(USRP)过空中测试中验证了该方法。在Quasi-Awgn和多路径衰落方案下,分析了OFDM框架中所有提出的4D混合星座的错误性能。

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