This invention generally relates to passenger conveyors. More particularly, this invention relates to a diagnostic device which facilitates determining the cause of failure or malfunctions associated with a passenger conveyor.
Passenger conveyors, such as escalators, typically include a plurality of steps that travel around a loop for carrying passengers between landings, which may be located at different levels of a building. Occasionally, there is a need for maintenance or repair of the escalator.
During maintenance or repair, operating sounds are usually checked to determine if the escalator is operating in a normal condition. If there are any abnormal sounds, a conventional maintenance or repair process will involve making an educated guess of the components causing the sounds, and removing a plurality of steps from the escalator to gain access to a space beneath the steps to visually check such components in order to determine the cause of failure or malfunctions associated with the escalator.
This process is both time-consuming and labor-intensive since it is difficult to pin point the components causing the sounds due to sound reverberations in the interior space of the escalator and since visual checks need to be done after shutting down the escalator and removing steps there from. The process also involves the risk of maintenance personnel being injured.
In view of the above and other considerations, there is a need for a diagnostic device which facilitates determining the cause of failure or malfunctions associated with a passenger conveyor.
According to one embodiment of the invention, a diagnostic step for a passenger conveyor comprises at least one camera for shooting at least one lateral side of the interior space of the passenger conveyor, at least one directional microphone pointed to said at least one lateral side of the interior space of the passenger conveyor and an analyzer unit which receives image data from the camera and sound data from the directional microphone and transmits the data to an outside network.
According to another embodiment of the invention, a method for performing maintenance or repair of a passenger conveyor using a diagnostic step comprising at least one camera and at least one directional microphone comprises removing a step from a passenger conveyor and installing the diagnostic step in place of the removed step, collecting image data from the camera of at least one lateral side of the interior space of the passenger conveyor while the passenger conveyor is operating, collecting sound data from the directional microphone of said at least one lateral side of the interior space of the passenger conveyor while the passenger conveyor is operating and transmitting the image data and the sound data to an outside network.
The detailed description explains embodiments of the invention, together with advantages and features, by way of example with reference to the drawings.
The example passenger conveyor 1 of
The escalator steps 2 are coupled to a step chain 12 which may include a plurality of rollers 13 connected by a plurality of links 14. The step chain 12 and the escalator steps 2 are driven by the drive system via the first sprocket wheel 6. A typical step chain 12 includes a pair of parallel endless loops on both lateral sides of the escalator steps 2. The loops are connected together by transverse axles (not shown) that pass between and help support the escalator steps 2. Thus, while only a single loop is illustrated in
An endless handrail 15 passes around a balustrade assembly 16. While only a single handrail 15 is illustrated in
As shown in
The outer surface 19a of the tread portion 19 corresponds to the surface of escalator step 2 which receives the foot of a passenger and faces generally upward during the advance path. The tread portion 19 includes at least one maintenance window 25 (three in this example) for access to the inner side of the diagnostic step 18.
The diagnostic step 18 includes at least one camera 26, at least one directional microphone 28 and an analyzer unit 29 in the space defined by the tread portion 19, riser portion 20 and step arms 21. In the embodiment shown in
In this way, the cameras 26 and the microphones 28 may collect images or sounds of components positioned on the left-hand side and on the right-hand side separately. Such components may include components such as the handrail drive system 10 or sprocket wheels 6, 7. The cameras 26 and the microphones 28 may be adjusted through the maintenance windows 25 after installing the diagnostic step 18 onto the escalator.
The analyzer unit 29 may be attached to the inner surface 19b of the tread portion 19. A detailed view of the analyzer unit 29 is shown in
In another embodiment, the camera 26 itself may include a memory or storage such as a SD card and a wireless network interface device such as a WiFi interface. Image data may be stored in the memory or storage and will be directly accessible through a wireless network.
With reference to
While the invention has been described in detail in connection with only a limited number of embodiments, it should be readily understood that the invention is not limited to such disclosed embodiments. Rather, the invention can be modified to incorporate any number of variations, alterations, substitutions or equivalent arrangements not heretofore described, but which are commensurate with the spirit and scope of the invention. Additionally, while various embodiments of the invention have been described, it is to be understood that aspects of the invention may include only some of the described embodiments. Accordingly, the invention is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.
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20180208441 A1 | Jul 2018 | US |