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Design and Prototyping Flow of Flexible and Efficient NISC-Based Architectures for MIMO Turbo Equalization and Demapping ?

机译:基于灵活高效的基于NISC的MIMO Turbo均衡和解映射的设计和原型流程?

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In the domain of digital wireless communication, flexible design implementations are increasingly explored for different applications in order to cope with diverse system configurations imposed by the emerging wireless communication standards. In fact, shrinking the design time to meet market pressure, on the one hand, and adding the emerging flexibility requirement and, hence, increasing system complexity, on the other hand, require a productive design approach that also ensures final design quality. The no instruction set computer (NISC) approach fulfills these design requirements by eliminating the instruction set overhead. The approach offers static scheduling of the datapath, automated register transfer language (RTL)synthesis and allows the designer to have direct control of hardware resources. This paper presents a complete NISC-based design and prototype flow, from architecture specification till FPGA implementation. The proposed design and prototype flow is illustrated through two case studies of flexible implementations, which are dedicated to low-complexity MIMO turbo-equalizer and a universal turbo-demapper. Moreover, the flexibility of the proposed prototypes allows supporting all communication modes defined in the emerging wireless communication standards, such LTE, LTE-Advanced, WiMAX, WiFi and DVB-RCS. For each prototype, its functionality is evaluated, and the resultant performance is verified for all system configurations.
机译:在数字无线通信领域,越来越多地针对不同的应用探索灵活的设计实现方式,以应对新兴的无线通信标准所强加的各种系统配置。实际上,一方面要缩短设计时间以满足市场压力,另一方面要增加新兴的灵活性要求,从而增加系统复杂性,这需要一种高效的设计方法,同时还要确保最终的设计质量。无指令集计算机(NISC)方法通过消除指令集开销来满足这些设计要求。该方法提供了数据路径的静态调度,自动寄存器传输语言(RTL)综合功能,并使设计人员可以直接控制硬件资源。本文介绍了一个完整的基于NISC的设计和原型流程,从架构规范到FPGA实施。通过对灵活实现的两个案例研究来说明所提议的设计和原型流程,这些案例专门用于低复杂度MIMO涡轮均衡器和通用涡轮解映射器。而且,所提出的原型的灵活性允许支持新兴的无线通信标准中定义的所有通信模式,例如LTE,LTE-Advanced,WiMAX,WiFi和DVB-RCS。对于每个原型,都要评估其功能,并验证所有系统配置的最终性能。

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