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Non-reciprocal coupling network for beam-steering coupled oscillator arrays

机译:波束控制耦合振荡器阵列的不可逆耦合网络

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A non-reciprocal coupling network for beam-steering coupled oscillator arrays (COAs) is investigated. It is shown that this non-ferrite circuit based on the non-reciprocal behaviour of microwave transistor amplifiers generates explementary phases between adjacent coupled oscillators. Thus, this coupling network can be used to increase the array stability while extending the achievable scanning range. Numerical simulations of a multistage coupling network have shown the possibility of obtaining nonreciprocal coupling phases up to u000b1;180u000b0; with transmission coefficients better than –2 dB. The circuit is also useful for compensating the reciprocal coupling effect between the antenna elements. It has been shown numerically that a multistage coupling network leads to non-reciprocal coupling phases up to u000b1;180u000b0; with transmission coefficients better than –7.5 dB for a weakly COA of patch antennas at 10 GHz. A single-stage circuit with non-reciprocal coupling phases of u000b1;175u000b0; was designed, fabricated and tested. Numerical simulations of the circuit show non-reciprocal coupling phases of +179.5u000b0; and –175.1u000b0; at 10 GHz, while measured results show non-reciprocal coupling phases of +172.7u000b0; and –168.6u000b0; at 9.920 GHz.
机译:研究了波束转向耦合振荡器阵列(COA)的不可逆耦合网络。结果表明,基于微波晶体管放大器不可逆行为的这种非铁氧体电路在相邻耦合振荡器之间产生互补相位。因此,该耦合网络可用于增加阵列稳定性,同时扩展可实现的扫描范围。多级耦合网络的数值模拟显示了获得高达u000b1; 180u000b0;互不耦合的相位的可能性。传输系数优于–2 dB。该电路还可用于补偿天线元件之间的相互耦合效应。从数值上显示,多级耦合网络导致不可逆的耦合阶段,最高可达u000b1; 180u000b0;对于10 GHz的贴片天线弱COA,传输系数优于–7.5 dB。单相电路,其互逆耦合相位为u000b1; 175u000b0;被设计,制造和测试。电路的数值模拟显示了+ 179.5u000b0的不可逆耦合相位;和–175.1u000b0;在10 GHz时,虽然测量结果显示+ 172.7u000b0的互逆耦合相位;和–168.6u000b0;在9.920 GHz。

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