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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >A Power-Scalable Channel-Adaptive Wireless Receiver Based on Built-In Orthogonally Tunable LNA
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A Power-Scalable Channel-Adaptive Wireless Receiver Based on Built-In Orthogonally Tunable LNA

机译:基于内置正交可调LNA的功率可扩展信道自适应无线接收器

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摘要

Most of the traditional RF circuits are static or minimally tunable using some digital controllability. For example, high power, low power and shut down modes are available in some commercially available transceivers. If available, the tuning knobs affect different specifications in an interdependent manner, resulting in changing several specifications when only one needs to be tuned. This is not enough for power optimal operation of complete self-aware self-adaptive circuits and systems. Independent or orthogonal tunability of the important conflicting specifications using built-in tuning knobs allow optimal adaptation of the wire-less systems. In this paper we demonstrate the design and benefits of orthogonal tuning knobs using an inductorless LNA as a test vehicle. The design of an orthogonally tunable LNA is discussed that has a 14 dB Gain tuning range and 30 dB OIP3 tuning range as its power consumption goes down by 20×. Measurement results on this LNA validate the concept of orthogonal tunability. Use of this orthogonally tunable LNA within an adaptive wireless receiver framework shows power savings of 2× compared to a static system and an extra savings of 22% compared to a traditional nonorthogonal adaptive system.
机译:大多数传统的RF电路是静态的,或者使用一些数字可控性可微调。例如,在某些市售收发器中可以使用高功率,低功率和关闭模式。调音旋钮(如果可用)以相互依存的方式影响不同的规格,从而在仅需调整一个时会更改多个规格。这对于完整的自我感知自适应电路和系统的电源最佳运行是不够的。使用内置的调节旋钮,可以对重要的相互冲突的规格进行独立或正交的可调,以实现无线系统的最佳匹配。在本文中,我们演示了使用无电感LNA作为测试工具的正交调谐旋钮的设计和优势。讨论了正交可调LNA的设计,该LNA具有14 dB的增益调谐范围和30 dB的OIP3调谐范围,因为其功耗降低了20倍。该LNA的测量结果验证了正交可调性的概念。在自适应无线接收器框架内使用这种正交可调LNA,与静态系统相比可节省2倍的功耗,与传统的非正交自适应系统相比,可节省22%的功耗。

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