The present invention relates to a choke organized to filter in differential mode and in common mode.
As is known, a power converter comprises a DC power supply bus supplied by a DC voltage source, a bus capacitor intended to maintain the DC voltage of the bus at a constant value and an inverter module intended to convert the DC voltage supplied via the bus into a variable voltage intended for an electrical load. In a power converter of variable speed drive type, the DC voltage source comprises a rectifier module connected to an electrical distribution network and intended to rectify the AC voltage supplied by the network and to apply a DC voltage to the DC power supply bus.
It is also known practice to connect a choke to the DC power supply bus in order to act on the THDi (“Total Harmonic Distortion of Current”) and the PWHD (“Partial Weighted Harmonic Distortion”).
The THDi corresponds to the current mode harmonic distortion ratio and therefore represents the RMS value of the harmonics related to the RMS value of the fundamental current. For its part, the PWHD introduces a weighting giving more weight to the high-frequency harmonics, more particularly those in the ranks 14 to 40.
It is known from the prior art to produce a coupled choke making it possible to filter in differential mode and in common mode (
Consequently, designing a ferromagnetic core in which the sizes of the different branches are optimized, by independently adjusting the common mode filtering and the differential mode filtering, demands the use of a material that can be machined or that can be cast.
The document JP H11 204355A describes, for its part, a solution that makes it possible to merge two chokes into just one in order to profit from the magnetic circuit available in the system.
The aim of the invention is to propose a choke that allows for common mode filtering and differential mode filtering, by overcoming the constraints of standard volumes available on the market. The choke of the invention will notably be able to be manufactured by stacking magnetic plates.
This aim is achieved by a differential mode and common mode choke comprising:
According to a particular feature, the first lateral branch and the second lateral branch are manufactured by stacking magnetic plates or by machining or casting magnetic material.
According to another particular feature, the central branch is manufactured by stacking magnetic plates or by machining or casting magnetic material.
According to another particular feature, the top part and the bottom part are manufactured by stacking magnetic plates or by machining or casting magnetic material.
The invention also relates to a power converter intended to be connected to an electrical load and comprising:
Other features and advantages will become apparent from the following detailed description in light of the appended drawings in which:
With reference to
Preferentially, the first lateral branch 1 and the second lateral branch 3 are identical and are therefore of one and the same thickness. The central branch 2 can have a variable size depending on the EMC (electromagnetic compatibility) requirements of the electrical appliance accommodating it. The central branch 2 can thus have a size which ranges from 0 to 100% of the size of the lateral branches 1, 3.
According to the invention, the first lateral branch 1 is separated from the top part 4 by a first air gap e1 and from the bottom part 5 by a second air gap e10.
The second lateral branch 3 is separated from the top part 4 by a first air gap e3 and from the bottom part 5 by a second air gap e30.
The central branch 2 is separated from the top part 4 by a first air gap e2 and from the bottom part 5 by a second air gap e20.
According to the invention, the three branches 1, 2, 3 are therefore independent in relation to the top 4 and bottom 5 parts. It is therefore easy to adjust their size independently and therefore set the value of the inductance of the filtering performed by each of them. Moreover, by producing them independently, it is possible to manufacture them according to different methods, minimizing the material waste. The three branches 1, 2, 3 of the choke will thus be able to be manufactured by assembling magnetic plates or by machining or casting a magnetic material. Similarly, the top part 4 and the bottom part 5 will be able to be manufactured by assembling magnetic plates or by machining or casting a magnetic material.
According to the invention, a first coil b1 is wound around the first lateral branch and a second coil b3 is wound around the second lateral branch. The central branch does not support any coil (
The choke of the invention will notably be adapted for connection to a power converter, of the variable speed drive type. Referring to
A power converter of variable speed drive type also comprises, upstream of the bus capacitor Cbus, a rectifier module REC connected to an electrical distribution network R and intended to rectify an AC voltage supplied by the electrical distribution network R and to apply the DC voltage to the DC power supply bus.
According to the invention, the power converter comprises a choke of the invention, connected to the DC power supply bus, upstream of the bus capacitor Cbus. The choke is connected to the DC power supply bus in such a way that its first coil b1 is connected in series to the first power supply line L1 and its second coil b3 is connected in series to the second power supply line L2.
Thus, referring to
Referring to
The central branch is therefore dedicated solely to the common mode and to the EMC management. Thus, the arrangement and the wiring of the coils make it possible to uncouple the common mode inductance value from the differential mode inductance value.
The particular arrangement of the choke of the invention with independent branches thus makes it possible to be able to easily set the inductance values by acting on the size of the branches and on the air gaps present between the branches and the top and bottom parts and therefore to adapt the architecture of the choke to the desired application.
Number | Date | Country | Kind |
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13 52471 | Mar 2013 | FR | national |
Number | Name | Date | Kind |
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6459739 | Vitenberg | Oct 2002 | B1 |
20050068144 | Miettinen | Mar 2005 | A1 |
20070211501 | Zargari | Sep 2007 | A1 |
20080094159 | Sodo | Apr 2008 | A1 |
20090140829 | Sodo | Jun 2009 | A1 |
20130234526 | Jacobson | Sep 2013 | A1 |
Number | Date | Country |
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1 519 392 | Mar 2005 | EP |
2 068 430 | Jun 2009 | EP |
11-204355 | Jul 1999 | JP |
Entry |
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JP-11204355A; Sawae Takao; Jul. 30, 1999—(Translation Document). |
French Preliminary Search Report issued Nov. 12, 2013, in Patent Application No. FR 1352471, filed Mar. 20, 2013. |
Number | Date | Country | |
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20140286068 A1 | Sep 2014 | US |