AUTOMATIC COMMISSIONING FOR AN ELEVATOR SIGNALIZATION NETWORK DEVICE
20210211355 · 2021-07-08
Assignee
Inventors
- Santtu Koskinen (Helsinki, FI)
- Mikko Piironen (Helsinki, FI)
- Anssi Rantamäki (Helsinki, FI)
- Mikko HEISKANEN (Helsinki, FI)
- Ari KOIVISTO (Helsinki, FI)
- Mikko Mattila (Helsinki, FI)
Cpc classification
H04L41/0816
ELECTRICITY
B66B1/3453
PERFORMING OPERATIONS; TRANSPORTING
B66B25/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66B1/34
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A commissioning arrangement for elevator and escalator network devices is disclosed. When the elevator network devices are connected to the elevator network they first get a unique communication address from another network element that is typically a network switch located higher in the chain of network switches. Then, using the established communication address, the network element contacts an automatic commissioning service for acquiring network configuration settings.
Claims
1. A method for changing configuration of network elements in a transportation infrastructure control network, which method comprises: connecting or disconnecting a network element to the transportation infrastructure control network; receiving, at the network element, a unique communication address from a second network element; requesting configuration settings from an automatic commissioning service; and receiving the requested configuration settings at the network element.
2. The method according to claim 1, wherein the second network element is the automatic commissioning service or a core switch.
3. The method according to claim 1, wherein the network element is a core switch or a shaft switch.
4. The method according to claim 1, wherein the network element is a router.
5. A computer program embodied on a non-transitory computer readable medium and comprising computer executable computer program code, wherein the computer program code is configured to perform the method according to claim 1 when the computer program is executed in a computing device.
6. A transportation infrastructure arrangement comprising a data communication network, wherein the data communication network comprises: an automatic commissioning service; a core switch, wherein the core switch is connected to the automatic commissioning service; and at least one shaft switch, wherein the at least one shaft switch is connected to the core switch directly or through another shaft switch.
7. The transportation infrastructure arrangement according to claim 6, wherein the shaft switches are arranged as a chain in at least one elevator shaft.
8. The transportation infrastructure arrangement according to claim 6, wherein the core switch is configured to request a unique communication address and configuration settings from the automatic commissioning service.
9. The transportation infrastructure arrangement according to claim 6, wherein the elevator and escalator arrangement comprises a plurality of elevator groups and each of the groups comprises an automatic commissioning service assigned for the group.
10. The method according to claim 2, wherein the network element is a core switch or a shaft switch.
11. The method according to claim 2, wherein the network element is a router.
12. A computer program embodied on a non-transitory computer readable medium and comprising computer executable computer program code, wherein the computer program code is configured to perform the method according to claim 2 when the computer program is executed in a computing device.
13. A computer program embodied on a non-transitory computer readable medium and comprising computer executable computer program code, wherein the computer program code is configured to perform the method according to claim 3 when the computer program is executed in a computing device.
14. A computer program embodied on a non-transitory computer readable medium and comprising computer executable computer program code, wherein the computer program code is configured to perform the method according to claim 4 when the computer program is executed in a computing device.
15. The transportation infrastructure arrangement according to claim 7, wherein the core switch is configured to request a unique communication address and configuration settings from the automatic commissioning service.
16. The transportation infrastructure arrangement according to claim 7, wherein the elevator and escalator arrangement comprises a plurality of elevator groups and each of the groups comprises an automatic commissioning service assigned for the group.
17. The transportation infrastructure arrangement according to claim 8, wherein the elevator and escalator arrangement comprises a plurality of elevator groups and each of the groups comprises an automatic commissioning service assigned for the group.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The accompanying drawings, which are included to provide a further understanding of the automatic commissioning for elevator signalization network devices and constitute a part of this specification, illustrate example embodiments and together with the description help to explain the principles of the automatic commissioning for elevator signalization network devices. In the drawings:
[0024]
[0025]
DETAILED DESCRIPTION
[0026] Reference will now be made in detail to the embodiments, examples of which are illustrated in the accompanying drawings.
[0027] In the following description, an elevator is used as an example. The arrangement is also suitable for escalators and systems comprising both elevators and escalators. In the following description an addition of a switch is disclosed as an example, however, same principles can be applied when adding a router to the network. Furthermore, the similar principles may be used when a network element is removed from the network or the network topology is modified in some other manner.
[0028] In
[0029]
[0030] Furthermore, in high buildings it is common that all elevators do not stop at each of the floors.
[0031] In
[0032] The arrangement shown in
[0033] A shaft switch is a network switch that is located in an elevator shaft or in the direct vicinity of an elevator shaft. Thus, commonly a qualification for shaft work is required for installing a shaft switch. A shaft switch is configured to receive and transmit data for elevator use, wherein the data may be critical for the use of the elevator. These switches may also be used for non-critical data transmissions and data communications that do not relate to the use of the elevator; however, this is not necessary.
[0034]
[0035] In the starting situation of the method, the network comprises at least an automatic commissioning service and a core switch, which is connected to the automatic commissioning service. The core switch may be connected to other network components, such as other switches, routers or gateways that provide access to other networks or the internet. These additional components may also be incorporated with the automatic commissioning service.
[0036] When the initial situation is constructed, the core switch is connected to the automatic commissioning service. The automatic commissioning service provides a unique communication address, such as a network address, to the core switch. Then, the core switch requests full network configuration from the automatic commissioning service and starts using the configuration given by the automatic commissioning service.
[0037] The example method of
[0038] When the shaft switch has been connected to the core switch, the core switch will provide the shaft switch with a unique communication address, step 21. The shaft switch may use the unique communication address when communicating with other network elements and devices in the network.
[0039] The shaft switch will request configuration or network settings from an automatic commissioning service, step 22. The automatic commissioning service recognizes the position of the shaft switch in the topology and generates the correct configuration for the shaft switch. Then the generated configuration is transmitted to the shaft switch and received at the shaft switch.
[0040] In
[0041] In
[0042] The above described methods may be implemented as computer software which is executed in a computing device that can be connected to a data communication network. When the software is executed in a computing device, it is configured to perform the above described inventive method. The software is embodied on a computer readable medium, so that it can be provided to the computing device, such as the core switch or shaft switches of
[0043] As stated above, the components of the exemplary embodiments can include a computer readable medium or memories for holding instructions programmed according to the teachings of the present embodiments and for holding data structures, tables, records, and/or other data described herein. The computer readable medium can include any suitable medium that participates in providing instructions to a processor for execution. Common forms of computer-readable media can include, for example, a floppy disk, a flexible disk, hard disk, magnetic tape, any other suitable magnetic medium, a CD-ROM, CDR, CDRW, DVD, DVD-RAM, DVDRW, DVDR, HD DVD, HD DVD-R, HD DVD-RW, HD DVD-RAM, Blu-ray Disc, any other suitable optical medium, a RAM, a PROM, an EPROM, a FLASH-EPROM, any other suitable memory chip or cartridge, a carrier wave or any other suitable medium from which a computer can read.
[0044] It is obvious to a person skilled in the art that with the advancement of technology, the basic idea of the automatic commissioning for elevator signalization network devices may be implemented in various ways. The automatic commissioning for elevator signalization network devices and its embodiments are thus not limited to the examples described above; instead they may vary within the scope of the claims.