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Space Shift Keying (SSK) Modulation: On the Transmit-Diversity / Multiplexing Trade-Off

机译:空间移位键控(SSK)调制:在发射分集/多路复用权衡中

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Space Shift Keying (SSK) is a low-complexity modulation scheme for multiple-antenna wireless systems. In this paper, we analyze the transmit-diversity/multiplexing trade-off of SSK modulation with the main objective of developing practical solutions to achieve transmit-diversity. More specifically, the contributions of this paper are as follows: i) we propose a practical scheme that achieves transmit-diversity equal to two for any number of antennas at the transmitter. The solution is based on the so-called Time-Orthogonal-Signal-Design (TOSD) principle introduced in [1], and adopts time-orthogonal shaping filters at the transmitter; ii) we show that the TOSD principle with orthogonal shaping filters can be applied to the so-called Generalized SSK (GSSK) modulation scheme in [2], and that a transmit-diversity equal to two can still be obtained while increasing the data rate with respect to SSK modulation; and iii) we propose a general encoding scheme that allows us to get transmit-diversity greater than two. The solution combines TOSD and GSSK principles in a unique fashion, and is flexible enough to accommodate various transmit-diversity gains by trading-off the number of transmit-antenna, the number of simultaneously-active transmit-antenna, and the achievable data rate. Furthermore, proposed methods and findings are substantiated via analysis and numerical simulations.
机译:空间移位键控(SSK)是一种用于多天线无线系统的低复杂度调制方案。在本文中,我们分析了SSK调制的发射分集/复用权衡,其主要目的是开发实现发射分集的实用解决方案。更具体地说,本文的贡献如下:i)我们提出了一种实用的方案,对于发射机处的任何数量的天线,该方案均可以实现等于2的发射分集。该解决方案基于文献[1]中引入的所谓的时间正交信号设计(TOSD)原理,并在发射机处采用了时间正交整形滤波器。 ii)我们证明了具有正交整形滤波器的TOSD原理可以应用于[2]中的所谓的通用SSK(GSSK)调制方案,并且在增加数据速率的同时仍可以获得等于2的发射分集关于SSK调制; iii)我们提出了一种通用的编码方案,该方案可使我们获得大于2的发射分集。该解决方案以独特的方式结合了TOSD和GSSK原理,并且通过权衡发射天线的数量,同时激活的发射天线的数量和可达到的数据速率,具有足够的灵活性以适应各种发射分集增益。此外,通过分析和数值模拟证实了所提出的方法和发现。

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