COMMUNICATING CIRCUIT BREAKER ARCHITECTURE WITH AUTOMATIC LOAD CENTER POSITION IDENTIFICATION
20170103626 ยท 2017-04-13
Assignee
Inventors
Cpc classification
Y04S20/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01H2300/03
ELECTRICITY
Y02B90/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A communicating circuit breaker architecture with automatic load center position identification links circuit breakers having electronics for reporting a self-status signal including operating data and a position identifier. Each breaker has light pipes with optical ports at its sides for communicating with its neighbors and preferably a mechanically operated optical shunt providing an optical path through the breaker in the event of a trip. Each breaker has optical data transceivers for the light pipes which transmit self-status information through the light pipes and receive and repeat neighboring breaker status signals to its neighbors. The breakers form a network via their aligned optical ports reporting to an aggregator device in a known position of the Load Center which transmits breaker status reports outside the load center. Each breaker has a logic unit for determining its position in the load center based on the received position of a neighboring device.
Claims
1. An electronic circuit breaker with a case, separable electrical contacts, and electronic sensing/data apparatus, having: a) an optical data transceiver; b) electronics for encoding and reporting a self-status signal including operating data and a position identifier of the circuit breaker to the optical data transceiver, c) left and right side optical ports in the case, each optical port leading to a respective light pipe, each light pipe connected to the optical data transceiver for transmitting the self-status signal through one of the light pipes to an optical port, the optical data transceiver further capable of receiving and repeating neighboring breaker status signals through the light pipes to one of the optical ports; and d) a logic unit for identifying the position of the breaker in the load center based on a received position identifier of a neighboring device position.
2. The electronic circuit breaker according to claim 1 further comprising: a mechanically operated optical shunt for providing an optical communication path through the breaker as a result of separating the electrical contacts.
3. The electronic circuit breaker according to claim 1 wherein the optical data transceiver includes a transceiver section for each light pipe.
4. The electronic circuit breaker according to claim 1 wherein the front wall has an optical port and a corresponding light pipe for transmitting the self-status, the optical data transceiver further capable of receiving and repeating neighboring breaker status signals through the light pipes to one of the optical ports.
5. The electronic circuit breaker according to claim 4 wherein the optical data transceiver includes a transceiver section for each light pipe.
6. A load center comprising: a plurality of electronic circuit breakers, each breaker having: an optical data transceiver; electronics for encoding, and reporting a self-status signal including operating data and a position identifier of the circuit breaker to the optical data transceiver, left and right side optical ports in the case, each optical port leading to a respective light pipe, each light pipe connected to the optical data transceiver for transmitting the self-status signal through one of the light pipes to an optical port, the optical data transceiver further capable of receiving and repeating neighboring breaker status signals through the light pipes to one of the optical ports, and a logic unit for identifying the position of the breaker in the load center based on a received position identifier of a neighboring device position with the optical ports of neighboring breakers being aligned; an enclosure; and an aggregator which receives and transmits the status reports to a remote communication means for moving status reports outside the load center enclosure.
7. The electronic circuit breaker according to claim 1 further comprising: a mechanically operated optical shunt for providing an optical communication path through the breaker as a result of separating the electrical contacts.
8. The electronic circuit breaker according to claim 1 wherein the optical data transceiver includes a transceiver section for each light pipe.
9. The electronic circuit breaker according to claim 1 wherein the front wall has an optical port and a corresponding light pipe for transmitting the self-status signal through one of the light pipes to an optical port, the optical data transceiver further capable of receiving and repeating neighboring breaker status signals through the light pipes to one of the optical ports.
10. The electronic circuit breaker according to claim 9 wherein the optical data transceiver includes a transceiver section for each light pipe.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The foregoing and other advantages of the disclosed embodiments will become apparent upon reading the following detailed description and upon reference to the exemplary drawings according to one or more embodiments disclosed herein, wherein:
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DETAILED DESCRIPTION OF THE DISCLOSED EMBODIMENTS
[0020] As an initial matter, it will be appreciated that the development of an actual, real commercial application incorporating aspects of the disclosed embodiments will require many implementation specific decisions to achieve the developer's ultimate goal for the commercial embodiment. Such implementation specific decisions may include, and likely are not limited to, compliance with system related, business related, government related and other constraints, which may vary by specific implementation, location and from time to time. While a developer's efforts might be complex and time consuming in an absolute sense, such efforts would nevertheless be a routine undertaking for those of skill in this art having the benefit of this disclosure.
[0021] It should also be understood that the embodiments disclosed and taught herein are susceptible to numerous and various modifications and alternative forms. Thus, the use of a singular term, such as, but not limited to, a and the like, is not intended as limiting of the number of items. Similarly, any relational terms, such as, but not limited to, top, bottom, left, right, upper, lower, down, up, side, and the like, used in the written description are for clarity in specific reference to the drawings and are not intended to limit the scope of the invention.
[0022] By studying the drawings, and with particular reference to
[0023] As seen especially in
[0024] The electronics 63 (
[0025] Referring particularly to
[0026] Each circuit breaker can identify the position of its neighbors by communicating with them, i.e. receiving the neighbors' position information. When the load center is commissioned or powered on, only the aggregator knows its position, which could be position number 1 by default or the position information could be settable. Identification then automatically propagates down the panel by use of a logic unit 73 in each breaker, e.g. as a part of the electronics package 63 of the breakers. Logically, the circuit breaker with a front-side neighbor in position number 1 knows it is in position number 2, the breaker with number 2 on the right knows it is number 4, the breaker with number 4 in front of it knows it is number 3, the breaker with number 3 on its left knows it is number 5, etc.
[0027] Referring particularly to
[0028] While particular aspects, implementations, and applications of the present disclosure have been illustrated and described, it is to be understood that the present disclosure is not limited to the precise construction and compositions disclosed herein and that various modifications, changes, and variations may be apparent from the foregoing descriptions without departing from the scope of the disclosed embodiments as defined in the appended claims.