The invention relates to an electrical installation comprising a high voltage power source having a first ground reference, a low voltage power source having a second ground reference, a power unit receiving power from the high voltage power source and being conductively connected to the first ground reference, and one or more peripheral units receiving power from the low voltage power source.
Such electrical installations are generally applied and have the power unit connected to the high-voltage power source and the associated first ground reference, and have the peripheral units connected to the low voltage power source and associated second ground reference. To exchange signals between the two units their signal lines have to be electrically isolated in between units of which one unit has a high voltage ground reference and the other unit has a low voltage ground reference. An isolation barrier therefore needs to be present between these two units. Implementing isolation barriers in electrical installations can be quite cumbersome.
Further, a drive, such as a motor drive, powered by and/or comprised in the power unit is susceptible to common mode interference in the signal lines to the drive. This may cause erroneous responses by the drive and requires complicated circuitry for suppressing the common mode interference.
It is an objective of the invention to provide an electrical installation having high and low voltage power circuits with a reduced or minimum number of isolation barriers.
It is another or alternative objective of the invention to provide an electrical installation having high and low voltage power circuits with less sensitivity to common mode interference, especially of a connected drive.
It is yet another or alternative objective of the invention to provide an electrical installation having high and low voltage power circuits with less sensitivity to common mode interference of a connected motor drive.
At least one of the above objectives is achieved by an electrical installation comprising a high voltage power source having a first ground reference, a low voltage power source having a second ground reference, a power unit receiving power from the high voltage power source and being conductively connected to the first ground reference, and one or more peripheral units, wherein at least one of the peripheral units receives power from the high voltage power source and is conductively connected to the first ground reference.
In a preferred embodiment the first ground reference is galvanically isolated from the second ground reference to prevent electrical connection between both ground references.
In an embodiment the power unit comprises an electric motor drive, and in a further embodiment the power unit comprises an in-wheel electric motor drive. Especially when powering an electric motor one would like to prevent common mode interference and implementation of multiple isolation barriers.
In yet a further embodiment the electrical installation is installed in a vehicle, in which all surfaces that may contact a person during use of the vehicle can be galvanically isolated from the high voltage power source. Especially in a vehicle one would prefer to have no common mode interference for a proper and reliable functioning of the vehicle and a minimum of isolation barriers for safety and reliability purposes.
In an advantageous embodiment the vehicle comprises a metal chassis or metal subframe, and the second ground reference comprises the metal chassis or metal subframe. In a further advantageous embodiment the vehicle comprises a metal subframe and the second ground reference comprises the metal subframe, the vehicle further comprising a body of a non-conductive construction. The metal chassis or subframe proved to be reliable and safe for use as the second ground reference. Having a non-conductive body of the car prevents contact of the driver or user with conductive and electrically connected parts of the car.
In another embodiment the high voltage power source comprises a high voltage battery pack having a positive pole and a negative pole, and the first ground reference comprises the negative pole of the battery pack. Such battery pack effectively provides for the high voltage and storage of electrical energy.
In an embodiment the high voltage power source may have an operating voltage in the range of from 300 Volts to 600 Volts, more preferably to 1000 Volts, optionally up to 2000 Volts. In other embodiments the low voltage power source may have an operating voltage in the range of 8-Volts to 48 Volts.
In an advantageous embodiment the electrical installation comprises a communication unit receiving power from the low voltage power source and being conductively connected to the second ground reference, in which the communication unit can comprise a dashboard display. Since the communication unit, and especially a display of the communication unit, will be installed in a users area is proves to be safer to have it conductively connected to the second ground reference.
In another aspect the invention provides for a kit comprising components of the electrical installation according to the invention. The kit may be for installation in a vehicle.
Further features and advantages of the invention will become apparent from the description of the invention by way of non-limiting and non-exclusive embodiments. These embodiments are not to be construed as limiting the scope of protection. Various other embodiments can be envisioned within the scope of the invention. Embodiments of the invention will be described with reference to the accompanying drawings, in which like or same reference symbols denote like, same or corresponding parts, and in which
A scheme of a first embodiment of an electrical installation 1 according to the invention is shown in
A measurement unit MU measures power levels in the power lines 3 using signal lines 4. The measurement unit MU is powered by the low voltage power source 20 but is not connected to the associated second ground reference 21. Instead measurement unit MU is connected to the first ground reference 11 associated with the high voltage power source 10.
The electrical installation of the
A second embodiment of an electrical installation 1 according to the invention is shown in
A third embodiment of an electrical installation according to the invention is shown in
A fourth embodiment of an electrical installation according to the invention is shown in
A vehicle 100 having an electrical installation 1 according to the invention is depicted in
The vehicle or car 100 has wheels 130 that are each provided with an in-wheel electrical motor M for moving the car 100. An in-wheel electrical motor is, for instance, disclosed in WO 2001/054939. The motor is powered by a motor drive that is incorporated in the power unit PU of the electrical installation 1. The vehicle 100 has a metal chassis or subframe 110 that is connected to the electrical installation 1 such that the second ground reference comprises the metal chassis or subframe. The vehicle further has a body 120 of non-conductive construction that comprises materials that are electrical isolators. The measurement unit MU determines operating parameters of the power unit PU. It receives power from the high voltage power source 10 and is conductively connected to the first ground reference 11.
A display of the communication unit CU is arrange in the dashboard of the vehicle to display data to the driver and optionally to receive input from the driver and to pass the input to the logic unit LU. The communication unit CU is conductively connected to the second ground reference 21. All components of the electrical installation are arranged such that any surfaces that may come into contact with a person during use of the vehicle are galvanically isolated from the high voltage power source 10.
The high voltage source 10 comprises a high voltage battery pack. The first ground reference 10 comprises the negative pole of the battery pack. The positive pole of the battery pack is connected to the units PU and MU for powering these units. The operating voltage of the high voltage power source is in the range of 300 to 600 Volts, but the upper range may is preferably 1000 Volts and optionally 2000 Volts. The low voltage power source 20 has an operating voltage in the range of 8 to 48 Volts.
A vehicle can be provided with the electrical installation 1 disclosed during manufacture of the vehicle. However, it may also be provided as a kit comprising components of the electrical installation such that it can be retrofitted into a vehicle.
Number | Date | Country | Kind |
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2013271 | Jul 2014 | NL | national |
Filing Document | Filing Date | Country | Kind |
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PCT/NL2015/050549 | 7/27/2015 | WO | 00 |