The object of the present invention is to provide a system for operating a marshalling yard in a safer, more efficient and time saving way, by avoiding unnecessary procedures of preparation, usually done manually by mechanical means only, and turn it into an advanced operational technological safe facility.
Marshalling yards are one of the corner stones in the railway network. The railway world consists of many zones that may be attributed to zones called “Marshaling Yards” like depot areas, workshops areas, parking areas, preparation yards, marshaling yards in private plants, and more. In those yards, numerous operational train tracks are used to move the trains to different locations in each yard for different purposes such as fueling, maintenance, coupling and uncoupling wagons etc. Since the trains and/or the single locomotives traffic moves in a very low speed and low frequency, the switching points are operated manually and mechanically. Whereas routine movement of trains is automatically programmed and fixed for long distances, the traffic movements of trains and/or single locomotives in marshaling yards is neither fixed nor predictable and has, so far, been navigated manually since there was no automatic system that could monitor ad-hoc traffic movements.
This method of operation causes a significant slowdown in route preparation, lack of control specifically on the switching points, and on the train route as a whole, it causes decrease in safety level of locomotive movements in the yard and significantly increases the number of employees.
Manual work in marshaling yards is among the most dangerous ones within the railway field. Many cuts of wagons are moving through the marshaling yard with various speeds during split-up activities; top attention and experience are required from the persons working in marshaling yard. Therefore, there is an effort to reduce manual work in marshaling yard as much as possible while increasing, operational effectiveness and safety.
The new system introduces a safer and more efficient and time saving way, of operating marshaling yards by avoiding unnecessary procedures of route preparation performed by manual mechanical means only and turns it into an advanced technological safe facility.
To date there are 2 alternatives for administrating movable objects (locomotives or railway cars) in marshaling yards: either controlling by signaling systems or controlling by manpower and radio/acoustic communication without signaling systems. The new introduced system aims to improve the latter but also include the orientation of a signaling system.
The novelty introduced in the new system concerns the signaling system.
To date, identification of movable objects in track areas is monitored by two identification systems: either track circuit or axle counter. Both systems are very expensive and require installation of massive instrumentation and enchainment along the tracks. Another disadvantage of those systems (disadvantage related to marshal yards only) is their ability to solely identify train movable objects, human factors or other obstacles around the track zone.
The new system uses laser scanners that enables credible identification of train movable objects, human factors and other detected obstacles in track zone, thus increasing the safety level of marshaling yards. The new system offers a simpler and cheaper solution compared to the known ones and combines several means that normally are not part of trains signaling systems.
To date, in order to give the train driver an indication that the route is locked only for him, traffic signs are used. Furthermore, point indicators are installed along the switch points giving the train driver limited indication as to the switch conditions and in one direction only. All such systems do not give the driver any indication as to blocked tracks along the route, only at the starting drive route.
The use of laser scanners for alerting of blocked tracks section, between tracks direction led direction light element that guide the driver along the whole route, and video cameras that cover the whole route (inside the marshalling yard)—significantly improves the needed information provided to the driver and/or operator in marshaling yards.
The new system is a remote controlled, guiding and monitoring operational system that electronically operates and monitors the switch points as well as the route inside a marshaling yard and enables controlling it by coverage of laser scanners and high resolution digital video cameras.
The system comprises the following elements: Central computer and its I/O peripherals, power supply control cabinets, remotely controlled electric motors that operate (moves) the switch points, high resolution digital video cameras, laser scanners, automatically operated Led direction light element installed between tracks for visual indication to the driver along the route, cables and secured digital transmission.
The system may serve one or more control zones.
The new system is a remote control and monitoring system that electronically operates the switch points, monitors it and enables control of marshaling yards by coverage of laser scanners, high resolution digital video cameras, automatically operated Led direction light element installed between tracks for visual indication to the driver along the route, cables and secured digital transmission.
As may be seen in the schematic plan of the system (
A main computer 304 operates the system and may be located anywhere. The system's components are connected by digital transmission that may control operations from unlimited locations.
The main local operation system comprises, a power supply system, programmed controllers, relays, motors and various electronic devices.
As may be seen in
Direction light element 206 (shown in
As may be seen in
When all laser scanners within control area are showing “clear”, route may be prepared in the usual manner. Meaning, planning the schedule routes of the trains. If at least one scanner indicates “in use position”, the system enables the preparation of the route in emergency only and for no longer than 30 seconds. Preparation of the route in these instances means, re-routing train traffic to alternative routes.
Main computer 304 performs the preparation of trip route.
Main computer 304 performs the locking of route. Once the route is locked, switch points 207 at control area are not movable.
When the route is locked visual route indicators 206 are alight along the route trip, indicating to the driver that route is locked for him and pointing out to him the direction of the trip.
The driver gets confirmation to move via radio/acoustic communications.
When operator ensures via cameras display 301 and main computer screen 302 that the entire movable object had exited switch points 207 zone, operator releases the route and the system returns to start point.
Number | Date | Country | Kind |
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258182 | Mar 2018 | IL | national |
This application is a Continuation of PCT application No. PCT/IL2019/050245, filed on Mar. 6, 2019, which claims priority to Israeli Patent Application No. 258182, filed on Mar. 18, 2018. The disclosure of the priority application is incorporated in its entirety herein by reference.
Number | Name | Date | Kind |
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20170106885 | Singh | Apr 2017 | A1 |
Number | Date | Country |
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203616631 | May 2014 | CN |
4302377 | Aug 1994 | DE |
2004161071 | Jun 2004 | JP |
Entry |
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International Preliminary Report of Patentability issued by the International Searching Authority in corresponding International Patent Application No. PCT/ IL2019/050245, dated Mar. 8, 2020. |
International Search Report issued by the International Searching Authority in corresponding International Patent Application No. PCT/IL2019/050245, dated Jun. 27, 2019. |
Number | Date | Country | |
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20200406945 A1 | Dec 2020 | US |
Number | Date | Country | |
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Parent | PCT/IL2019/050245 | Mar 2019 | WO |
Child | 17017525 | US |