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A Dual-band Balanced Amplifier with CRLH Transmission Lines Fully Implemented

机译:完全实现具有CRLH传输线的双频平衡放大器

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The topology of balanced amplifiers has conventionally been one of good solutions for broadband amplifiers. Although feedback amplifiers have broader band characteristics than normal single-ended amplifiers, balanced amplifiers have been more popular with their additional technical advantages such as high output power, redundancy, and many productive applications in wireless systems. However, in most cases, the wide operating band of the balanced amplifiers contain not only the practically required multiple narrow bands, but the frequency bands in the vicinity of the practically used bands. So it is normal that the balanced amplifiers operate at the un-required bands within their broad operating band, which can cause the problems of channel capacity, interference, and so on. In this work, a dual-band balanced amplifier, which has been composed of dual-band couplers and amplifier, is discussed (Fig. 1). The couplers operate at dual-bands and implemented by composite right/left handed (CRLH) transmission lines. In addition, the amplifier is also designed for the dual-band operation using the CRLH structure, while its topology is just like a single-ended amplifier (Fig. 2). As the design example, in this work, a dual-band balanced amplifier has been designed, fabricated, and measured with the target frequencies of 1800MHz and 2300 MHz. It is shown that the gain performances appear clearly only at the required dual frequency bands, while the gain at other bands in the vicinity of the required bands are well rejected (Fig. 3). The rejection in the gain seems to be excellent due to the dual-band performances of CRLH transmission line structure. It is believed that the selective dual-band gain performances of the proposed dual-band balanced amplifier are promising for improving the performances of wireless systems.
机译:传统上,平衡放大器的拓扑已成为宽带放大器的良好解决方案之一。尽管反馈放大器比普通的单端放大器具有更宽的频带特性,但平衡放大器因其额外的技术优势(例如高输出功率,冗余和无线系统中的许多生产性应用)而越来越受欢迎。但是,在大多数情况下,平衡放大器的宽工作频带不仅包含实际需要的多个窄带,而且包含实际使用的频带附近的频带。因此,平衡放大器通常在其宽工作频带内的不需要频带上工作,这会引起信道容量,干扰等问题。在这项工作中,将讨论一个由双频耦合器和放大器组成的双频平衡放大器(图1)。耦合器工作在双频段,并由右/左复合(CRLH)传输线实现。此外,该放大器还设计为使用CRLH结构进行双频操作,而其拓扑结构类似于单端放大器(图2)。作为设计示例,在这项工作中,已经设计,制造并以目标频率1800MHz和2300 MHz进行测量的双频带平衡放大器。结果表明,增益性能仅在所需的双频段上清晰可见,而在所需频段附近的其他频段上的增益被很好地抑制了(图3)。由于CRLH传输线结构的双频性能,增益抑制似乎很出色。可以相信,所提出的双频带平衡放大器的选择性双频带增益性能有望改善无线系统的性能。

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