Power allocation for space shift keying in underwater acoustic communication

Yue Sun, Jintao Wang, Longzhuang He
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Abstract

Multiple-input multiple-output (MIMO) is considered to be the key technology to improve the spectral efficiency for underwater acoustic communication (UAC) systems. As a novel architecture of MIMO system, space shift keying (SSK) is proposed to improve the energy efficiency comparing with traditional MIMO architecture. In this paper, the Lagrange multiplier method (LMM) is applied to solve the power allocation problem in SSK system, and a genetic based heuristic method is proposed to provide superior performance of symbol error rate (SER). Comparing with other prescaling techniques of SSK, such as multi-antenna space modulation (MSMod) and modified SSK (MSSK), the genetic based heuristic method can keep the benefits of SSK, while having a lower computational complexity at the receiver. The Monte Carlo simulation results are shown to verify the SER performance of this proposed method.
水声通信中空间移位键控的功率分配
多输入多输出(MIMO)被认为是提高水声通信系统频谱效率的关键技术。空间移位键控(SSK)作为一种新型的MIMO系统结构,与传统的MIMO结构相比,提高了系统的能效。本文将拉格朗日乘子方法(LMM)应用于SSK系统的功率分配问题,并提出了一种基于遗传的启发式方法,以提供优越的符号错误率(SER)性能。与多天线空间调制(MSMod)和改进的SSK (MSSK)等SSK预标技术相比,基于遗传的启发式方法既保留了SSK的优点,又具有较低的接收端计算复杂度。蒙特卡罗仿真结果验证了该方法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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