Santamaria Ignacio, Crespo Pedro M, Lameiro Christian, Schreier Peter J
Departamento de Ingeniería de Comunicaciones, Universidad de Cantabria, 39005 Santander, Spain.
TECNUN, Universidad de Navarra, 20018 San Sebastián, Spain.
Entropy (Basel). 2018 Jan 11;20(1):45. doi: 10.3390/e20010045.
Non-circular or improper Gaussian signaling has proven beneficial in several interference-limited wireless networks. However, all implementable coding schemes are based on finite discrete constellations rather than Gaussian signals. In this paper, we propose a new family of improper constellations generated by widely linear processing of a square -QAM (quadrature amplitude modulation) signal. This family of discrete constellations is parameterized by κ , the circularity coefficient and a phase ϕ . For uncoded communication systems, this phase should be optimized as ϕ * ( κ ) to maximize the minimum Euclidean distance between points of the improper constellation, therefore minimizing the bit error rate (BER). For the more relevant case of coded communications, where the coded symbols are constrained to be in this family of improper constellations using ϕ * ( κ ) , it is shown theoretically and further corroborated by simulations that, except for a shaping loss of 1.53 dB encountered at a high signal-to-noise ratio (snr), there is no rate loss with respect to the improper Gaussian capacity. In this sense, the proposed family of constellations can be viewed as the improper counterpart of the standard proper -QAM constellations widely used in coded communication systems.
在若干受干扰限制的无线网络中,非圆形或非恰当高斯信号已被证明是有益的。然而,所有可实现的编码方案都是基于有限离散星座图,而非高斯信号。在本文中,我们提出了一类新的非恰当星座图,它是通过对一个方形QAM(正交幅度调制)信号进行广义线性处理生成的。这类离散星座图由圆度系数κ和相位ϕ参数化。对于未编码通信系统,该相位应优化为ϕ*(κ),以最大化非恰当星座图各点之间的最小欧几里得距离,从而最小化误码率(BER)。对于更相关的编码通信情况,其中编码符号使用ϕ*(κ)被约束在这类非恰当星座图中,理论上表明并通过仿真进一步证实,除了在高信噪比(snr)时遇到1.53 dB的整形损耗外,相对于非恰当高斯容量没有速率损失。从这个意义上说,所提出的星座图族可被视为编码通信系统中广泛使用的标准恰当QAM星座图的非恰当对应物。