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Lightweight Middleware for Software Defined Radio (SDR) Inter-Components Communication

机译:用于软件无线电(sDR)组件间通信的轻量级中间件

摘要

The ability to use Software Defined Radio (SDR) in the civilian mobile applications will make it possible for the next generation of mobile devices to handle multi-standard personal wireless devices and ubiquitous wireless devices. The original military standard created many beneficial characteristics for SDR, but resulted in a number of disadvantages as well. Many challenges in commercializing SDR are still the subject of interest in the software radio research community. Four main issues that have been already addressed are performance, size, weight, and power.This investigation presents an in-depth study of SDR inter-components communications in terms of total link delay related to the number of components and packet sizes in systems based on Software Communication Architecture (SCA). The study is based on the investigation of the controlled environment platform. Results suggest that the total link delay does not linearly increase with the number of components and the packet sizes. The closed form expression of the delay was modeled using a logistic function in terms of the number of components and packet sizes. The model performed well when the number of components was large.Based upon the mobility applications, energy consumption has become one of the most crucial limitations. SDR will not only provide flexibility of multi-protocol support, but this desirable feature will also bring a choice of mobile protocols. Having such a variety of choices available creates a problem in the selection of the most appropriate protocol to transmit. An investigation in a real-time algorithm to optimize energy efficiency was also performed. Communication energy models were used including switching estimation to develop a waveform selection algorithm. Simulations were performed to validate the concept.
机译:在民用移动应用中使用软件定义无线电(SDR)的能力将使下一代移动设备能够处理多标准个人无线设备和无处不在的无线设备。最初的军事标准为SDR创造了许多有益的特性,但同时也带来了许多弊端。在软件无线电研究界,SDR商业化的许多挑战仍然是人们关注的主题。已经解决了四个主要问题,即性能,大小,重量和功率。此调查从与基于系统的组件数量和数据包大小相关的总链路延迟的角度,对SDR组件间通信进行了深入研究。关于软件通信体系结构(SCA)。该研究基于对受控环境平台的调查。结果表明,总链路延迟不会随组件数量和数据包大小线性增加。延迟的封闭形式表达是使用逻辑函数对组件数量和数据包大小进行建模的。当零部件数量很大时,该模型表现良好。基于移动应用,能耗已成为最关键的限制之一。 SDR不仅将提供多协议支持的灵活性,而且这种理想的功能还将带来移动协议的选择。具有如此多种选择可用,在选择最合适的协议进行传输时会产生问题。还进行了实时算法的研究,以优化能源效率。使用通信能量模型(包括开关估计)来开发波形选择算法。进行了仿真以验证该概念。

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    Putthapipat Pasd;

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  • 年度 2013
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