Enhanced elevator radio signal coverage
11431372 · 2022-08-30
Assignee
Inventors
Cpc classification
H04B7/15507
ELECTRICITY
H04B1/38
ELECTRICITY
B66B1/3446
PERFORMING OPERATIONS; TRANSPORTING
H04W16/26
ELECTRICITY
B66B1/3461
PERFORMING OPERATIONS; TRANSPORTING
International classification
H04B1/38
ELECTRICITY
H04W16/26
ELECTRICITY
B66B1/34
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention allows enhancing radio signal coverage in an elevator environment. An elevator antenna pair comprises a primary antenna that is configured to transmit and receive radio frequency signals with an external wireless communication network. The elevator antenna pair further comprises a secondary antenna that is communicatively connected to the primary antenna and configured to transmit and receive radio frequency signals with at least one radio frequency transceiver in an elevator car. The primary antenna is arranged within an elevator landing signalization unit, and the secondary antenna is arranged inside an elevator hoistway.
Claims
1. An elevator system, comprising: an elevator car associated with at least one radio frequency transceiver, the elevator car configured to open at openings associated with floors as the elevator car moves in a hoistway; elevator landing signaling devices mounted on first sides of walls of the floors facing the hoistway such that the elevator landing signaling devices are associated with respective ones of the openings, the elevator landing signaling devices connected to an elevator controller via control wiring penetrating through-holes in the walls, the elevator landing signaling devices including printed circuit board (PCBs) having, in addition to circuitry associated with controlling the elevator landing signaling devices, primary antennas and connectors mounted thereto, each of the primary antennas including a passive repeater antenna configured to transmit and receive radio frequency signals with an external wireless communication network external to a building housing the elevator system, the elevator landing signaling devices including at least one of elevator call buttons, elevator hall lanterns or elevator hall indicators such that the PCBs that include the primary antennas are within devices associated with transmitting signals associated with elevator calls; and secondary antennas within the hoistway on a second side of the walls, the secondary antenna communicatively connected to respective ones of the primary antennas via wires penetrating same ones of the through-hole in the walls as the control wiring to connect the wires to the connector of respective ones of the PCBs to form antenna pairs such that the antenna pairs are distributed substantially evenly between the floors to provide radio signal coverage for a whole length of the hoistway, the secondary antennas each including a passive repeater antenna configured to transmit and receive radio frequency signals with the at least one radio frequency transceiver within the elevator car, wherein one or more of a mobile device associated with a passenger traveling within the elevator car or elevator emergency communication equipment within the elevator car is configured to exchange communications between the elevator car and the external wireless communication network via a communication path including the at least one RF transceiver associated with the elevator car, at least one of the secondary antennas within the hoistway, and the respective ones of the primary antennas within the elevator landing signaling devices wiredly connected to the at least one of the secondary antennas via the wires penetrating the through-hole and wirelessly communicating with the external wireless communication network.
2. The elevator system according to claim 1, wherein one of the antenna pairs is arranged in a top floor.
3. The elevator system according to claim 1, wherein one of the antenna pairs is arranged in a bottom floor.
4. The elevator system according to claim 1, wherein the primary antennas comprise a metal foil.
5. The elevator system according to claim 1, wherein the external wireless communication network is a wireless telecommunication network.
6. The elevator system according to claim 1, further comprising: The elevator emergency communication equipment including the at least one radio frequency transceiver within the elevator car such that the elevator emergency communication equipment is configured to communicate with the external wireless communication network via the second antennas.
7. An elevator system comprising: a plurality of elevator landing signaling devices mounted on first sides of walls of landings of a hoistway with control wirings connecting the plurality of elevator landing signaling devices to an elevator controller penetrating through-holes in the walls, the elevator landing signaling devices including printed circuit board (PCBs) having, in addition to circuitry associated with controlling the elevator landing signaling devices, primary antennas and connectors mounted thereto, the primary antennas configured to transmit and receive radio frequency signals with an external wireless communication network external to a building housing the elevator system, the plurality of elevator landing signaling devices each including at least one of elevator call buttons, elevator hall lanterns or elevator hall indicators such that the PCBs that include the primary antennas are within devices associated with transmitting signals associated with elevator calls; and secondary antennas within the hoistway on a second side of the walls, the secondary antennas communicatively connected to respective ones of the primary antennas via wires penetrating same ones of the through-holes in the walls as the control wiring to connect the wires to the connector of respective ones of the PCBs to form antenna pairs that relay communication from at least one radio frequency transceiver within an elevator car in the hoistway to the external wireless communication network via the respective ones of the primary antennas connected thereto, wherein one or more of a mobile device associated with a passenger traveling within the elevator car or elevator emergency communication equipment within the elevator car is configured to exchange communications between the elevator car and the external wireless communication network via a communication path including the at least one RF transceiver associated with the elevator car, at least one of the secondary antennas within the hoistway, and the respective ones of the primary antennas within the elevator landing signaling devices wiredly connected to the at least one of the secondary antennas via the wires penetrating the through-hole and wirelessly communicating with the external wireless communication network.
8. The elevator system of claim 7, wherein the primary antennas and the secondary antennas are arranged as antenna pairs such that the antenna pairs are distributed substantially evenly between floors of a building to provide radio signal coverage for a whole length of the hoistway.
9. The elevator system of claim 7, wherein the primary antennas and the secondary antennas each include passive repeaters.
10. The elevator system of claim 7, wherein the primary antennas and the secondary antennas are arranged as antenna pairs associated with landings of a building such that, in each of the antenna pairs, the primary antennas are outside the hoistway on a respective one of the landings and the secondary antennas are inside the hoistway adjacent to the respective one of the landings.
11. The elevator system of claim 7, further comprising: the elevator emergency communication equipment including the at least one radio frequency transceiver within with the elevator car such that the elevator emergency communication equipment is configured to communicate with the external wireless communication network via the second antennas.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings, which are included to provide a further understanding of the invention and constitute a part of this specification, illustrate embodiments of the invention and together with the description help to explain the principles of the invention. In the drawings:
(2)
(3)
(4) Like reference numerals are used to designate like parts in the accompanying drawings.
DETAILED DESCRIPTION OF THE INVENTION
(5) Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings. The detailed description provided below in connection with the appended drawings is intended as a description of the present examples and is not intended to represent the only forms in which the present examples may be constructed or utilized. The description sets forth the functions of the examples and the sequence of operations for constructing and operating the example. However, the same or equivalent functions and sequences may be accomplished by different examples.
(6)
(7) The elevator antenna pair 100 comprises a primary antenna 110 that is configured to transmit and receive radio frequency signals with an external wireless communication network. The external wireless communication network may comprise e.g. a wireless telecommunication network, such as a mobile telecommunications network based on second generation (2G), third generation (3G), fourth generation (4G) and/or fifth generation (5G) mobile telecommunications technology. Alternatively/in addition, the wireless communication network may comprise e.g. a wireless local area network (WLAN).
(8) The elevator antenna pair 100 further comprises a secondary antenna 120 that is communicatively connected to the primary antenna 110 and configured to transmit and receive radio frequency signals with at least one radio frequency transceiver in an elevator car, such as the radio frequency transceiver 211 in the elevator car 210 of
(9) The primary antenna 110 and the secondary antenna 120 may each comprise a passive repeater antenna. The primary antenna 110 is arranged within an elevator landing signalization unit, such as the elevator landing signalization unit 231a or 231b of
(10) The secondary antenna 120 may be communicatively connected to the primary antenna 110 via a wire 130, and further via a connector 140 that may be arranged (e.g. pre-installed) in the elevator landing signalization unit 231.
(11) The elevator landing signalization unit 231 may comprise a printed circuit board (PCB) 232 on which the connector 140 may be arranged or installed. Furthermore, the primary antenna 110 may be arranged on or in the printed circuit board 232 of the elevator landing signalization unit 231. In an embodiment, the connector 140 and the primary antenna 110 may be arranged on or in the same PCB 232 of the elevator landing signalization unit 231, as shown in
(12)
(13) The elevator system 200 comprises an elevator car 210 that has at least one radio frequency transceiver 211. At least one of the radio frequency transceiver(s) 211 in the elevator car 210 may comprise a (wireless) elevator emergency telephone. Furthermore, at least one of the radio frequency transceiver(s) 211 in the elevator car 210 may comprise wireless devices (e.g. mobile telephones, tablet computers, and the like) of the passengers in the elevator car 210.
(14) The elevator system 200 further comprises a hoistway 220 that comprises openings 221a, 221b to floors. Herein, the term “opening” is used to refer to openings to the floors served by the elevator system 200, to allow passenger access to the elevator car 210. Typically, each opening comprises a door frame, door sill, rider plates, door panel(s), door tracks, door hangers and locks.
(15) Each opening 221a, 221b has an associated elevator landing signalization unit 231a, 231b. Herein, the term “signalization” is used to refer to the push buttons, hall lanterns and the like used to call elevator cars and to indicate the status, position and the like of the elevator cars. Accordingly, the elevator landing signalization unit 231a, 231b may comprise elevator call buttons, elevator hall lanterns and/or elevator hall indicators and their associated electronics including printed circuit boards 232a, 232b.
(16) The elevator system 200 further comprises elevator antenna pairs 100a, 100b. In the example of
(17) The wire 130a, 130b of the antenna pairs 100a, 100b may be laid via a hoistway wall through-hole that has been pre-arranged for display cabling of the associated elevator landing signalization unit 231a, 231b. Accordingly, no extra wall drillings for the antenna pairs 100a, 100b are required.
(18) As shown in
(19) The term ‘apparatus’ or ‘mobile apparatus’ is used herein to refer to any device with processing capability such that it can execute instructions. Those skilled in the art will realize that such processing capabilities are incorporated into many different devices and therefore these terms each include mobile telephones (including smart phones), tablet computers, personal digital assistants and many other devices.
(20) One or more interface mechanisms can be used with the exemplary embodiments, including, for example, Internet access, telecommunications in any suitable form (e.g., voice, modem, and the like), wireless communications media, and the like. For example, employed communications networks or links can include one or more satellite communications networks, wireless communications networks, cellular communications networks, 3G communications networks, 4G communications networks, Public Switched Telephone Network (PSTNs), Packet Data Networks (PDNs), the Internet, intranets, a combination thereof, and the like.
(21) Any range or device value given herein may be extended or altered without losing the effect sought.
(22) Although the subject matter has been described in language specific to structural features and/or acts, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as examples of implementing the claims and other equivalent features and acts are intended to be within the scope of the claims.
(23) It will be understood that the benefits and advantages described above may relate to one embodiment or may relate to several embodiments. The embodiments are not limited to those that solve any or all of the stated problems or those that have any or all of the stated benefits and advantages. It will further be understood that reference to ‘an’ item refers to one or more of those items.
(24) Aspects of any of the examples described above may be combined with aspects of any of the other examples described to form further examples without losing the effect sought.
(25) The term ‘comprising’ is used herein to mean including the elements identified, but that such elements do not comprise an exclusive list and an antenna or apparatus may contain additional elements.
(26) While the present inventions have been de-scribed in connection with a number of exemplary embodiments, and implementations, the present inventions are not so limited, but rather cover various modifications, and equivalent arrangements, which fall within the purview of prospective claims.