Energy detection UWB receiver design using a multi-resolution VHDL-AMS description

M. Crepaldi, M. Casu, M. Graziano
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引用次数: 18

Abstract

Ultra wide band (UWB) impulse radio systems are appealing for location-aware applications. There is a growing interest in the design of UWB transceivers with reduced complexity and power consumption. Non-coherent approaches for the design of the receiver based on energy detection schemes seem suitable to this aim and have been adopted in the project the preliminary results of which are reported in this paper. The objective is the design of a UWB receiver with a top-down methodology, starting from Matlab-like models and refining the description down to the final transistor level. This goal will be achieved with an integrated use of VHDL for the digital blocks and VHDL-AMS for the mixed-signal and analog circuits. Coherent results are obtained using VHDL-AMS and Matlab. However, the CPU time cost strongly depends on the description used in the VHDL-AMS models. In order to show the functionality of the UWB architecture, the receiver most critical functions are simulated showing results in good agreement with the expectations.
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能量检测UWB接收机设计采用多分辨率VHDL-AMS描述
超宽带(UWB)脉冲无线电系统对位置感知应用具有吸引力。人们对设计降低复杂性和功耗的超宽带收发器越来越感兴趣。基于能量探测方案的接收器设计的非相干方法似乎适合于这一目标,并已在项目中采用,其初步结果在本文中报告。目标是用自上而下的方法设计UWB接收器,从类似matlab的模型开始,并将描述细化到最终的晶体管级别。这一目标将通过集成使用VHDL用于数字块和VHDL- ams用于混合信号和模拟电路来实现。利用VHDL-AMS和Matlab获得了相干结果。然而,CPU时间成本很大程度上取决于VHDL-AMS模型中使用的描述。为了展示超宽带架构的功能,对接收机的大部分关键功能进行了仿真,结果与预期的很好地吻合。
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