A New Analytical Model for SIM–OFDM Contradicts the Previously Claimed Features

IF 0.6 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS
A. N. Jabbar, Samir J. Almuraab, A. Kadhim
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引用次数: 1

Abstract

— The Subcarrier Index Modulation OFDM (SIM– OFDM) appeared in 2009 promising a –3 dB transmitted power reduction without affecting the system performance. Therefore, it became an attractive choice to upgrade the communication systems with researchers’ increasing interest. Despite the research efforts in SIM–OFDM field, there was no in-depth investigation for such transmitted power reduction or the system’s performance. The claimed power reduction relies on probabilistic assumptions that were not validated considering system operation concepts. This paper provides a new analytical model that characterizes the actual SIM–OFDM behavior. The contribution of this model is the inclusion of the majority condition in the derivation of 1’s pmf which modifies the 1’s pmf into a complex nonlinear function that is always higher than 1/2. The new pmf effect upon the power reduction, synchronization, and the overall Bit Error Rate ( BER ) is investigated. The new analytical model shows that the –3 dB power reduction cannot be achieved. Also, no successful synchronization can be established unless extra subcarrier is added that will create a frame like communication system. Such scheme increases BER if the carrier is falsely detected creating a Frame Error Rate ( FER ) which might lead to serious problem.
一种新的SIM-OFDM分析模型与先前宣称的特性相矛盾
- 2009年出现的子载波指数调制OFDM (SIM - OFDM)承诺在不影响系统性能的情况下降低- 3 dB的传输功率。因此,随着研究人员的兴趣日益浓厚,对通信系统进行升级成为一个有吸引力的选择。尽管在SIM-OFDM领域进行了大量的研究,但对传输功率的降低和系统性能的影响还没有深入的研究。声称的功率降低依赖于未考虑系统操作概念的概率假设。本文提出了一种新的分析模型来描述SIM-OFDM的实际行为。该模型的贡献在于在1的pmf的推导中包含了多数条件,将1的pmf修改为一个始终大于1/2的复杂非线性函数。研究了新的pmf对降低功耗、同步和总体误码率(BER)的影响。新的分析模型表明,3 dB的功耗降低是无法实现的。此外,除非添加额外的子载波以创建类似帧的通信系统,否则无法建立成功的同步。这种方案增加了误码率,如果载波被错误检测产生帧误码率(FER),这可能导致严重的问题。
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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来源期刊
Journal of Communications Software and Systems
Journal of Communications Software and Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
14.30%
发文量
28
审稿时长
8 weeks
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