The invention relates to a device and a method for variably attenuating a radiated microwave signal.
The field of the invention is the field of microwave electromagnetics and more particularly that of attenuators for measuring microwave electromagnetic fields in the range 1 GHz-18 GHz, for example for high powers ranging from a few kilowatts to hundreds of megawatts in pulsed mode.
In the field of the invention, fixed attenuation alcohol attenuators are known. As described in the document referred to as [1] at the end of the description, these attenuators can consist of two Plexiglas plates separated by a wedge on the perimeter and filled with alcohol. Each actuator's attenuation is determined by the alcohol thickness. The attenuation value varies as a function of the frequency. By combining several attenuators, an attenuation variation is obtained.
But such attenuators have the following drawbacks. It is difficult to obtain a repetitive and gradual value of the attenuation values as a function of the combinations used. The attenuation value of the combination used does not necessarily correspond to the sum of the attenuation values of each attenuator. It is not easy to handle screens because of their weight. It is necessary to work in a secured zone (electromagnetic hazard and ionizing radiations) to modify the number and position of the screens.
The object of the invention is to provide a device and a method for microwave attenuation for high powers enabling these drawbacks to be overcome.
The invention relates to a device for variably attenuating a radiated microwave signal, for example for high powers ranging from a few kilowatts to hundreds of megawatts in pulsed mode, which comprises a tight cylinder with a variable volume filled with an electromagnetic energy absorbing liquid and remote control means, characterized in that it comprises a cylinder formed by a cylinder wall closed on either side by a first and a second flanges, in which a piston, bounding with the first flange a volume filled with this liquid can be displaced, the cylinder wall being pierced at its first end, located on the side of the first flange, with a liquid inlet/outlet port, the second flange being pierced with an air inlet/outlet port, a displacement sensor enabling the displacement of the piston to be known.
Advantageously, this liquid is alcohol.
Advantageously, the control means of the device of the invention comprise:
Advantageously, the different elements which make up this device are of polyethylene and/or polycarbon.
The invention also relates to a microwave attenuation method for high powers ranging from a few kilowatts to hundreds megawatts in pulsed mode, using such a device wherein the piston is displaced by a desired length.
The device according to the invention has the following advantages:
The device of the invention is usable for a high power microwave generator.
The invention aims at remotely varying a volume of a radiated electromagnetic energy absorbing liquid, for example alcohol, in a tight cylinder, by displacing a piston subjected to a pressure. The volume of this liquid is controlled by a displacement sensor which locates the position of the piston in the cylinder. Filling and discharging this liquid are performed by a pump. The displacement of the piston is carried out by a pneumatic control.
The materials used in the device of the invention are neutral from the electromagnetic point of view.
As illustrated in
The control means of the device of the invention comprise:
Thanks to the device of the invention, a volume of electromagnetic energy absorbing liquid, for example alcohol, is thus varied in a tight cylinder placed in front of a high power microwave source. The electromagnetic energy radiated is absorbed by this liquid and dissipated by heat exchange. The attenuation of the electromagnetic field is more or less significant according to the volume of this liquid placed in front of the source.
The characteristics of the device of the invention are the following:
In an advantageous exemplary embodiment, the device of the invention has the following characteristics:
The material used for the different elements making up the variable volume tight cylinder of the device of the invention are polyethylene and/or polycarbon.
[1] “Modification du générateur de forte puissance sinus 50” (DGA/DGE/CEG Marché n° 9925028; Final report n° IS RF 99-079A, Apr. 11, 2000)
Number | Date | Country | Kind |
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12 60839 | Nov 2012 | FR | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2013/073599 | 11/12/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2014/076070 | 5/22/2014 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3302101 | Glanville | Jan 1967 | A |
4482634 | Davis, Jr. | Nov 1984 | A |
7978145 | Hauhe | Jul 2011 | B2 |
20050017819 | Brown | Jan 2005 | A1 |
Number | Date | Country |
---|---|---|
1758844 | Apr 2006 | CN |
2 328 232 | Jun 2011 | EP |
761 366 | Nov 1956 | GB |
Entry |
---|
Translation of International Preliminary Report on Patentability issued in Application No. PCT/EP2013/073599 dated May 21, 2015. |
Search Report issued in French Patent Application No. FR 12 60839 dated Sep. 3, 2013. |
International Preliminary Report on Patentability issued in Application No. PCT/EP2013/073599 dated Feb. 16, 2015. |
International Search Report issued in Application No. PCT/EP2013/073599 dated Jan. 16, 2014. |
Korovin, S. et al., “Modificaiton du Generateur Micro-Ondes de Forte Puissance Sinus 500”, DGA/DGE/CEG Marché n° 9925028, Final report n° IS RF 99-079A, ITHPP-HCEI, Apr. 11, 2000. |
Number | Date | Country | |
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20160291071 A1 | Oct 2016 | US |