M -ary differential chaos shift keying (CIM-MC- Design of an MISO-SWIPT-Aided Code-Index Modulated Multi-Carrier M-DCSK System for e-Health IoT
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Design of an MISO-SWIPT-Aided Code-Index Modulated Multi-Carrier M-DCSK System for e-Health IoT

机译:E-Health IoT的Miso-Swipt-Afide-Index调制多载波M-DCSK系统的设计

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摘要

Code index modulated multi-carrier M -ary differential chaos shift keying (CIM-MC- M -DCSK) system not only inherits low-power and low-complexity advantages of the conventional DCSK system, but also significantly increases the transmission rate. This feature is of particular importance to Internet of Things (IoT) with trillions of low-cost devices. In particular, for e-health IoT applications, an efficient transmission scheme is designed to solve the challenge of the limited battery capacity for numerous user equipments served by one base station. In this paper, a new multiple-input-single-output simultaneous wireless information and power transfer (MISO-SWIPT) scheme for CIM-MC- M -DCSK system is proposed by utilizing orthogonal characteristic of chaotic signals with different initial values. The proposed system adopts power splitting mode, which is very promising for simultaneously providing energy and transmitting information of the user equipments without any external power supply. In particular, the new system can achieve desirable anti-multipath-fading capability without using channel estimator. Moreover, the analytical bit-error-rate expression of the proposed system is derived over multipath Rayleigh fading channels. Furthermore, the spectral efficiency and energy efficiency of the proposed system are analyzed. Simulation results not only validate the analytical expressions, but also demonstrate the superiority of the proposed system.
机译:代码索引调制多载波<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> m - 差分混沌移位键控(CIM-MC- m -dcsk)系统不仅继承了传统DCSK系统的低功耗和低复杂性优势,而且显着提高了传输速率。此功能特别重要于有万亿辆低成本设备的内容(IOT)。特别是对于E-Health IoT应用,旨在解决一个基站服务的许多用户设备的电池容量有限的电池容量的挑战。在本文中,CIM-MC- <斜体XMLNS的新多输入单输出同声无线信息和电力传输(MISO-SWIPT)方案:MML =“http://www.w3.org/1998/math / MathML“XMLNS:XLink =”http://www.w3.org/1999/xlink“>通过利用具有不同初始值的混沌信号的正交特性提出了m -dcsk系统。所提出的系统采用功率分割模式,这非常有希望,用于同时提供用户设备的能量和发送信息,而无需任何外部电源。特别地,新系统可以在不使用信道估计器的情况下实现所需的抗多路径衰落能力。此外,所提出的系统的分析比特差速率表达式通过多径瑞利衰落通道导出。此外,分析了所提出的系统的光谱效率和能量效率。仿真结果不仅验证了分析表达,而且还证明了所提出的系统的优越性。

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