Passive and Nonintrusive Monitoring and Reporting of Frozen Liquid Crystal Display (LCD)
20190180660 ยท 2019-06-13
Inventors
Cpc classification
G09G3/3618
PHYSICS
G09G5/024
PHYSICS
G09G3/006
PHYSICS
G09G2330/12
PHYSICS
International classification
Abstract
A passively and nonintrusively monitoring liquid crystal display (LCD) system includes a graphics controller configured to generate alternating sets of drive instructions and forward the drive instructions for execution by drive electronics to activate display elements of a display surface. An initial set of drive instructions corresponding to a first frame causes the drive electronics to draw an initial pattern such as a solid red fill to selected regions of the display surface. An alternating set of drive instructions causes the drive electronics to draw a contrasting pattern such as a solid cyan fill to the selected regions. Given a sufficiently high refresh rate between the initial and alternating sets, a human operator perceives only the integration of the two patterns unless the display system is in a stuck or frozen state, when the frozen initial and contrasting patterns clearly and quickly indicate the stuck/frozen failure condition.
Claims
1. A passively and nonintrusively monitoring display system, comprising: a display surface comprising a two-dimensional array of display elements; drive electronics electronically connected to the display elements and configured to draw a sequence of frames on the display surface by executing drive instructions to activate the display elements; and a graphics controller coupled to the drive electronics, the graphics controller including at least one processor and configured to: generate a first set of the drive instructions associated with a first frame of the sequence, the first set configured to cause the drive electronics to draw 1) a first pattern within at least one first region of the display surface and 2) a second pattern within at least one second region of the display surface, the second pattern contrasting with the first pattern; send the first set to the drive electronics for execution; generate a second set of the drive instructions associated with a second frame of the sequence, the second frame alternating with the first frame, the second set configured to cause the drive electronics to draw 1) the first pattern within the at least one second region and 2) the second pattern within the at least one first region; and send the second set to the drive electronics for execution.
2. The passively and nonintrusively monitoring display system of claim 1, wherein the display system includes at least one active-matrix liquid crystal display (AM-LCD).
3. The passively and nonintrusively monitoring display system of claim 1, wherein the array of display elements includes at least one of a micro light-emitting diode (LED) and an organic LED (OLED).
4. The passively and nonintrusively monitoring display system of claim 1, wherein: the display system includes a primary flight display (PFD); and at least one of the first region and the second region are located proximate to one or more of an airspeed indicator, an altitude indicator, and an attitude indicator.
5. The passively and nonintrusively monitoring display system of claim 1, wherein: the first set is further configured to cause the drive electronics to draw 1) a third pattern within at least one third region of the display surface, the at least one third region within the at least one first region and the third pattern contrasting with the first pattern, and 2) a fourth pattern within at least one fourth region of the display surface, the at least one fourth region within the at least one second region and the fourth pattern contrasting with the second pattern; and the second set is further configured to cause the drive electronics to draw 1) the fourth pattern within the at least one third region and 2) the third pattern within the at least one fourth region.
6. The passively and nonintrusively monitoring display system of claim 1, wherein the at least one second region is at least one of horizontally adjacent and vertically adjacent to the at least one first region.
7. The passively and nonintrusively monitoring display system of claim 1, wherein the graphics controller is configured to, every n frames, repeat either the first set or the second set, where n is an integer.
8. The passively and nonintrusively monitoring display system of claim 1, wherein: the at least one first pattern includes at least one first solid pattern corresponding to a first color; and the at least one second pattern includes at least one second solid pattern corresponding to a second color complementary to the first color.
9. The passively and nonintrusively monitoring display system of claim 8, wherein the first color and the second color includes at least one of red and cyan.
10. The passively and nonintrusively monitoring display system of claim 1, wherein: the array of display elements includes a plurality of first display elements within either the at least one first region or the at least one second region, the plurality of first display elements associated with a drive voltage polarity; and the drive electronics are configured to, after executing the second set, reverse the drive voltage polarity.
11. The passively and nonintrusively monitoring display system of claim 1, wherein the display system is embodied in an avionics display system installable in an aircraft.
12. A passively and nonintrusively monitoring display system, comprising: a display surface comprising a two-dimensional array of display elements; drive electronics electronically connected to the display elements and configured to continuously draw a sequence of frames on the display surface by executing drive instructions to activate the display elements; and a graphics controller coupled to the drive electronics, the graphics controller including at least one processor and configured to: generate a first set of the drive instructions associated with every nth frame of the sequence, where n is an integer such that n modulo 3=1, the first set configured to cause the drive electronics to draw: a first pattern within at least one first region of the display surface; a second pattern within at least one second region of the display surface, the second pattern contrasting with the first pattern; and a third pattern within at least one third region of the display surface; generate a second set of the drive instructions associated with the sequence, the second set configured to cause the drive electronics to draw: the first pattern within the at least one third region; the second pattern within the at least one first region; and the third pattern within the at least one second region; generate a third set of the drive instructions associated with the sequence, the third set configured to cause the drive electronics to draw: the first pattern within the at least one second region; the second pattern within the at least one third region; and the third pattern within the at least one first region; and send the first set, the second set, and the third set to the drive electronics for execution.
13. The passively and nonintrusively monitoring display system of claim 12, wherein the array of display elements includes at least one of a micro light-emitting diode (LED) and an organic LED (OLED).
14. The passively and nonintrusively monitoring display system of claim 12, wherein: the second set is associated with every pth frame of the sequence, wherein p is an integer such that p modulo 3=2; and the third set is associated with every rth frame of the sequence, wherein r is an integer such that r modulo 3=0.
15. The passively and nonintrusively monitoring display system of claim 12, wherein: the third set is associated with every pth frame of the sequence, wherein p is an integer such that p modulo 3=2; and the second set is associated with every rth frame of the sequence, wherein r is an integer such that r modulo 3=0.
16. The passively and nonintrusively monitoring display system of claim 12, wherein: the display system includes a primary flight display (PFD); and at least one of the first region, the second region, and the third region are located proximate to one or more of an airspeed indicator, an altitude indicator, and an attitude indicator.
17. The passively and nonintrusively monitoring display system of claim 12, wherein: the first set is further configured to cause the drive electronics to draw: a fourth pattern within at least one fourth region of the display surface, the at least one fourth region within the at least one first region and the fourth pattern contrasting with the first pattern; and a fifth pattern within at least one fifth region of the display surface, the at least one fifth region within the at least one second region and the fifth pattern contrasting with the second pattern; the second set is further configured to cause the drive electronics to draw: the fourth pattern within at least one sixth region of the display surface, the at least one sixth region within the at least one third region; and the fifth pattern within the at least one fourth region; and the third set is further configured to cause the drive electronics to draw: the fourth pattern within the at least one fifth region; and the fifth pattern within the at least one sixth region.
18. The passively and nonintrusively monitoring display system of claim 12, wherein one or more of the at least one second region and the at least one third region is at least one of horizontally adjacent and vertically adjacent to the at least one first region.
19. The passively and nonintrusively monitoring display system of claim 12, wherein: the at least one first pattern includes at least one first solid pattern corresponding to a first color; the at least one second pattern includes at least one second solid pattern corresponding to a second color complementary to the first color; and the at least one third pattern includes at least one solid black pattern.
20. The passively and nonintrusively monitoring display system of claim 12, wherein the display system is embodied in an avionics display system installable in an aircraft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Implementations of the inventive concepts disclosed herein may be better understood when consideration is given to the following detailed description thereof. Such description makes reference to the included drawings, which are not necessarily to scale, and in which some features may be exaggerated and some features may be omitted or may be represented schematically in the interest of clarity. Like reference numerals in the drawings may represent and refer to the same or similar element, feature, or function. In the drawings:
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0017] Before explaining at least one embodiment of the inventive concepts disclosed herein in detail, it is to be understood that the inventive concepts are not limited in their application to the details of construction and the arrangement of the components or steps or methodologies set forth in the following description or illustrated in the drawings. In the following detailed description of embodiments of the instant inventive concepts, numerous specific details are set forth in order to provide a more thorough understanding of the inventive concepts. However, it will be apparent to one of ordinary skill in the art having the benefit of the instant disclosure that the inventive concepts disclosed herein may be practiced without these specific details. In other instances, well-known features may not be described in detail to avoid unnecessarily complicating the instant disclosure. The inventive concepts disclosed herein are capable of other embodiments or of being practiced or carried out in various ways. Also, it is to be understood that the phraseology and terminology employed herein is for the purpose of description and should not be regarded as limiting.
[0018] As used herein a letter following a reference numeral is intended to reference an embodiment of the feature or element that may be similar, but not necessarily identical, to a previously described element or feature bearing the same reference numeral (e.g., 1, 1a, 1b). Such shorthand notations are used for purposes of convenience only, and should not be construed to limit the inventive concepts disclosed herein in any way unless expressly stated to the contrary.
[0019] Further, unless expressly stated to the contrary, or refers to an inclusive or and not to an exclusive or. For example, a condition A or B is satisfied by anyone of the following: A is true (or present) and B is false (or not present), A is false (or not present) and B is true (or present), and both A and B are true (or present).
[0020] In addition, use of the a or an are employed to describe elements and components of embodiments of the instant inventive concepts. This is done merely for convenience and to give a general sense of the inventive concepts, and a and an are intended to include one or at least one and the singular also includes the plural unless it is obvious that it is meant otherwise.
[0021] Finally, as used herein any reference to one embodiment, or some embodiments means that a particular element, feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the inventive concepts disclosed herein. The appearances of the phrase in some embodiments in various places in the specification are not necessarily all referring to the same embodiment, and embodiments of the inventive concepts disclosed may include one or more of the features expressly described or inherently present herein, or any combination of sub-combination of two or more such features, along with any other features which may not necessarily be expressly described or inherently present in the instant disclosure.
[0022] Broadly, embodiments of the inventive concepts disclosed herein are directed to a system and related methods for providing passive and nonintrusive monitoring of either a commercial off the shelf (COTS) avionics display system or a custom avionics display without dedicated hardware monitoring. The graphics generator inserts alternating high contrast patterns into the sequence of frames drawn by the drive controller, such that when the display system sticks or freezes an indicator of the failure condition is immediately and prominently visible to the pilot.
[0023] Referring to
[0024] The graphics generator 110 may include hardware and software for generating specific drive instructions implemented by the drive controller 108 via the external driver chips 104, 106. For example, gate drivers (106) may digitally and sequentially enable the MN array of display elements on a row by row basis, while source drivers (104) may provide analog drive voltages to the individual capacitors corresponding to the row of display elements currently enabled by the gate drivers 106. The drive instructions may provide for drawing specific frames corresponding to required images, based on sensor input as well as the position, velocity, and heading of the embodying aircraft. For example, a sequence of continually refreshing frames may correspond to a sequence of discrete sets of drive instructions, each set corresponding to a new frame (e.g., an odd-numbered or even-numbered frame).
[0025] Referring to
[0026] The display surface 112a may be implemented similarly to the display surface 112 except that, during every even-numbered frame (e.g., frames 2, 4, . . . 60) of the refresh cycle, the display system 100 may reverse the drawn patterns, drawing the initial pattern 118 to the region 114 and the contrasting pattern 120 to the region 116. Any appropriately contrasting combination of patterns may be employed by the display system 100. For example, the initial pattern 118 may be drawn as a solid red fill while the contrasting pattern 120 may be drawn as a solid cyan (blue+green) fill.
[0027] Referring now to
[0028] Accordingly, by alternating the initial pattern 118 and the contrasting pattern 120 (as shown by
[0029] The display surface 112c may be implemented and may function similarly to the display surface 112b, except that the display surface 112c may reflect the display system 100 in a stuck or frozen condition. For example, refresh operations of the display system 100 may stop while an even-numbered frame (as shown by the display surface 112a,
[0030] Referring to
[0031] The display surface 112e may be implemented and may function similarly to the display surface 112a of
[0032] Referring now to
[0033] Referring now to
[0034] Referring to
[0035] The display system 100 may ensure that no direct-current (DC) drive voltage is maintained on any individual LCD display element for an extended period of time. For example, LCD display elements are subject to afterimage (image retention) if residual DC drive voltages are maintained. Because conventional LCD systems may reverse the polarity (e.g., positive/negative) of the drive voltage of each individual display element with every frame, this may result in odd-numbered frames (e.g., the display surface 112,
[0036] Alternatively, the display system 100 may prevent afterimage by modifying the displayed frame sequence rather than the drive voltage polarities. For example, while displaying a sequence of alternating odd-numbered (e.g., display surfaces 112, 112d (
[0037] Referring now to
[0038] Referring also to
[0039] As will be appreciated from the above, systems and methods according to embodiments of the inventive concepts disclosed herein may provide passive monitoring of stuck or frozen display conditions for avionics monitors (whether COTS or custom) without the need to incorporate complex and expensive monitoring equipment.
[0040] From the above description, it is clear that the inventive concepts disclosed herein are well adapted to carry out the objects and to attain the advantages mentioned herein as well as those inherent in the inventive concepts disclosed herein. While presently preferred embodiments of the inventive concepts disclosed herein have been described for purposes of this disclosure, it will be understood that numerous changes may be made which will readily suggest themselves to those skilled in the art and which are accomplished within the broad scope and coverage of the inventive concepts disclosed and claimed herein.