Nonlinear reactive circuits driven by magnetic flux compression generators

L. Altgilbers, Y. Tkach, T. Yatsenko, Y. Tkach
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引用次数: 3

Abstract

Presently, generators of broadband microwave radiation, using spiral magnetocumulative generator (MCG) as the energy source, are under intensive investigation [A.V. Pashenko, et al., 1998; A.B. Prishchepenko, 1991]. In the majority of the existing designs, researchers are attempting to generate high-power radiation over the broad spectral range by directly connecting the MCG to an antenna or by using the helical coil of the MCG as the radiating element [A.B. Prishchepenko, 1991; A.B. Prishchepenko, et al., 1996]. These are called direct drive devices. It is understood that the efficiency of these devices is very low, which is attributed to the impossibility of matching the energy source, with output characteristics that change in time, with antenna sizes no greater than tens of centimeters and to the fact that the characteristic length of the MCG current pulse, driving the antenna, ranges from 10/sup -7/ to 10/sup -6/ s. In addition, the maximum amount of energy lies within the spectral range 10/sup 6/ - 10/sup 7/ Hz, which corresponds to wavelengths of 300 - 30 m. Since the effective length of the antenna for these devices comprises only a fraction of the wavelength of the driving oscillations, the radiation efficiency is very small. As a result, direct drive devices radiate relatively low powers and have virtually isotropic radiation patterns, which is unacceptable for a number of applications. These problems can be solved by several different methods. One of them is to design a modulator, operating over a broad frequency range, corresponding to a wavelength less than or close to the size of the transmitting antenna, for coupling energy from the MCG into the antenna. This kind of modulator would not only provide effective modulation of strong currents, generated by MCG, but also enrich the spectrum of the current fluctuations, by shifting the spectrum to higher frequencies [A.V. Pashenko, et al., 1998]. This paper considers one possible type of modulator and presents the results of computer simulations.
由磁通压缩发生器驱动的非线性无功电路
目前,以螺旋磁累积发生器(MCG)为能量源的宽带微波辐射发生器正受到广泛的研究Pashenko等,1998;A.B. Prishchepenko, 1991]。在现有的大多数设计中,研究人员试图通过直接将MCG连接到天线或使用MCG的螺旋线圈作为辐射元件来产生宽光谱范围内的高功率辐射[A.B.Prishchepenko, 1991;A.B. Prishchepenko等,1996]。这些被称为直接驱动装置。据悉,这些设备的效率非常低,这是由于不可能匹配的能源,时间变化量的输出特性,与天线尺寸不超过几十厘米,MCG的特征长度电流脉冲,驱动天线,范围从10 /一口7 / 6 10 /晚餐/ s。此外,光谱范围内的最大的能量是10 /一口6 / - 10 /一口7 /赫兹,相当于波长300 - 30米。由于这些装置的天线的有效长度只包括驱动振荡波长的一小部分,因此辐射效率非常小。因此,直接驱动装置辐射相对较低的功率,并具有几乎各向同性的辐射模式,这是不可接受的许多应用。这些问题可以用几种不同的方法来解决。其中之一是设计一个调制器,工作在一个宽频率范围内,对应的波长小于或接近发射天线的尺寸,用于将MCG的能量耦合到天线中。这种调制器不仅可以有效调制由MCG产生的强电流,还可以通过将频谱转移到更高的频率来丰富电流波动的频谱[A.V.]Pashenko等,1998]。本文考虑了一种可能的调制器,并给出了计算机模拟的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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