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Uniformly Projected RCQD QAM: A Low-Complexity Signal Space Diversity Solution Over Fading Channels With or Without Erasures

机译:均匀投影的RCQD QAM:具有或不具有擦除功能的衰落信道上的低复杂度信号空间分集解决方案

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Rotated and cyclic Q-delayed (RCQD) quadrature amplitude modulation provides signal space diversity and thus improves system performance over fading channels. However, previously published RCQD solutions were designed without fully considering the high demodulation complexity which prohibits wider applications. In this paper, a complete solution is proposed to reduce complexity for both the modulator and the demodulator. This solution uses a series of rotation angles${lpha =}$arctan($1/{sqrt {M}}$) which bring many interesting properties to the RCQD signals. A simplified sphere demapping algorithm is derived for fading channels with and without erasure events. In contrast to the sphere-decoder used for multiple input multiple output detection, the radius of the proposed sphere-demapper involves an exact amount of constellation points, thereby ensuring to perform the soft demapping operation successfully. Moreover, when either the in-phase (${I}$) or the quadrature component (${Q}$) is erased, the proposed demapping algorithm performs as well as the full-complexity max-log algorithm, with a reduced complexity. Compared to the solution currently used in DVB-T2, the proposed method reduces tremendously the computational complexity while still achieving similar performance over fading channels and even better performance over fading erasure channels.
机译:旋转和循环Q延迟(RCQD)正交幅度调制可提供信号空间分集,从而改善衰落信道上的系统性能。但是,以前发布的RCQD解决方案在设计时并未充分考虑到高解调复杂性,从而阻止了广泛的应用。本文提出了一种完整的解决方案,以降低调制器和解调器的复杂性。此解决方案使用一系列旋转角度 n $ { alpha =} $ narctan( n $ 1 / { sqrt {M}} $ n),这为RCQD信号带来了许多有趣的特性。推导了针对带有和不带有擦除事件的衰落信道的简化球体解映射算法。与用于多输入多输出检测的球形解码器相比,所提出的球形解映射器的半径涉及确切数量的星座点,从而确保成功执行软解映射操作。此外,当同相( n $ {I} $ n)或正交分量( n <内联公式xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http://www.w3.org/1999/xlink ”> $ {Q} $ n),拟议的解映射算法的性能与全复杂度max-log算法一样好,降低复杂性。与目前在DVB-T2中使用的解决方案相比,该方法极大地降低了计算复杂性,同时在衰落信道上仍可实现类似的性能,而在衰落擦除信道上仍可实现更好的性能。

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