The present invention relates to electrical power distribution systems for aircraft, and in particular measuring transient electrical activity therein.
Aircraft electric power systems and other power distribution systems are exposed to a wide range of disturbances, which may initiate transient electrical events. For example, equipment failure and lightning strikes can lead to current and voltage transients. Short-circuit conditions can also result in transient surges. Such transients may cause electrical arcing in the power distribution system and/or overheating of circuit components, which in turn may present fire hazards.
Against this background, there is a tendency to design aircraft and other electric power systems to operate at higher and higher voltages and hence lower currents, allowing reduction in the weight of the cables of the system. Both DC and AC power systems may be used in aircraft.
In the prior art, transients have traditionally been measured using a current transducer, which in DC systems must interrupt the circuit under measurement in order to be inserted therein.
An alternative prior art approach involves the measurement of a travelling wave superimposed on the system voltage, brought about by the electrical transient. This method relies on knowledge of a characteristic circuit impedance which is uncontrolled in an electrical installation.
The present invention provides an electrical power distribution system for an aircraft, comprising a power source electrically connected to an electrical load and at least one circuit interruption device for interrupting current in the power distribution system, further comprising a distinguishing device connected to the system for distinguishing a transient electrical event in the system from a steady-state level of electrical activity in the system, wherein the transient electrical event induces a potential difference across all or part of the distinguishing device, the circuit interruption device being operable to interrupt current flowing through the power distribution system if the potential difference across the distinguishing device exceeds a threshold voltage.
Further, the present invention provides a method of measuring transient electrical activity in an electrical power distribution system for an aircraft comprising connecting a distinguishing device to the power distribution system, the distinguishing device being operable to separate a transient electrical event in the system from a background level of electrical activity in the system, wherein transient electrical activity in the system induces a potential difference across all or part the distinguishing device, monitoring the potential difference induced across all or part of the distinguishing device and operating a circuit interruption device to interrupt current flowing through the system if the potential difference exceeds a threshold voltage.
In steady state D.C. operation of the electrical system, without arcing or any other form of surge occurring, substantially no current flows through the distinguishing device. However, when a surge occurs, the current flowing through the system and hence through the sensor changes relatively rapidly, and the distinguishing device allows current to flow through it. Since it is the change in current whose measurement is enabled by the distinguishing device, the magnitude of the background steady state current/voltage does not hinder the measurement. The present invention advantageously decouples the transient from the steady state current, allowing simple measurement of the transient. Compared to the prior art approach of measuring a travelling wave superimposed on the system voltage, the present invention provides a considerably simpler and cheaper means of measuring a transient.
Various subsidiary features of the invention are set out in the dependent claims. In an advantageous embodiment of the invention, the distinguishing device can comprise at least one resistor connected to at least one capacitor. Using simple circuit components appropriately arranged in the distinguishing device, the device allows the flow of only transient currents in the power distribution system.
There follows a detailed description of embodiments of the invention by way of example only, with reference to the accompanying drawings, in which:
The operation of the present invention is based on the fact that, during a circuit transient such as an arcing event, an instantaneous voltage transient is imposed into the system. At the instance of the arc event the current must remain constant due to the circuit inductance; this is achieved converting some of the inductive energy (½LI2) into voltage, thus neutralizing the transient voltage effect and therefore allowing the circuit current to remain unaltered at the initial instance of the electrical transient. This transient increase in the system voltage can be measured if the measurement is taken with respect to the total system voltage or some invariant system neutral voltage.
It can be seen that there is lumped circuit inductance 29 distributed throughout the circuit, connecting the source 12 to the load 14. Should an arc event 15 occur, a voltage is instantiated across the arc itself. This voltage transient would have the effect of reducing the load voltage and thus load current, however, due to the circuit inductance the instantaneous current is not allowed to reduce. The circuit inductance causes an increase in the system voltage to compensate for the arc voltage transient. A distinguishing device 23, also referred to herein as a sensor 23, is connected to the system 21 at connection points 26 and 27. The distinguishing device 23 allows transient electrical activity to be distinguished from steady-state electrical activity. The device 23 forms a parallel circuit section connected to the poles of the power source 12.
The distinguishing device 23 comprises a capacitor 24 and a resistor 25, and under normal conditions, the capacitor current is zero and in the fully charged state of the capacitor the voltage across the resistor 25 is also zero. The capacitor 24 and the resistor 25 are connected in series.
Under a transient condition, the voltage across the sensor 23 is raised due to the compensating inductive energy of the circuit; however, the voltage across the capacitor cannot change instantly, due to the resistance 25 being in series with it. Therefore, the voltage transient appears across the resistor 25 which in turn can be measured. The voltage is measured across the points 27 and 28 as shown in
In each of the embodiments, the voltage measured across the resistor 25 is low or substantially zero in steady state operation of the power distribution system. When an electrical transient occurs anywhere in the system, the power surge causes a potential difference to arise across the resistor 25, which is measured using a voltmeter. If the voltage across the resistor exceeds a threshold value, action can be taken to prevent damage to the power distribution system. For example, a circuit breaker in the system can be tripped to cease current flow.
The distinguishing device 23, 33, 43 of the present invention can be retrofitted to existing power distribution systems.
Number | Date | Country | Kind |
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1008794.8 | May 2010 | GB | national |
Number | Name | Date | Kind |
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5513060 | Bremond | Apr 1996 | A |
5822166 | Massie | Oct 1998 | A |
7245470 | Hoopes | Jul 2007 | B2 |
20050219779 | Kim | Oct 2005 | A1 |
20090268364 | Trautman | Oct 2009 | A1 |
Number | Date | Country |
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2307537 | Nov 2000 | CA |
Entry |
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UK Examination Report from corresponding GB Application No. 1008794.8, dated Aug. 2, 2012. |
GB Search Report—Intellectual Property Office—Date of Search : Nov. 3, 2010. |
Number | Date | Country | |
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20110292555 A1 | Dec 2011 | US |