IP Library Granted Patent US 9,673,626
Granted Patent B2
US 9,673,626 · App. 14/111,760 · Granted Jun 6, 2017

Remote control and operation of LV distribution networks

Inventors: Brendan Normoyle (Castlemahon, IE); Aidan Quinn (Ballina, IE); Jean-Christophe Bouche (Ennis, IE); Philip Foxley (Conwy, GB); Leslie Allen (Clacton-On-Sea, GB); Melvyn McGann (Chelmsford, GB); Conor McLoughlin (Limerick, IE)
Assignees: TE Connectivity Ireland Limited; Tyco Electronics UK LTD
H02J3/00G01R31/088H01H3/00H01H9/542H04B3/54G01R19/2513H02J13/0024H04B2203/5441H04B2203/5458Y02B90/2623Y02B90/2692Y02E60/74Y02E60/7823Y02E60/7892Y04S10/30Y04S40/122Y04S40/146Y10T307/477
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Quick Facts
Patent No.
US 9,673,626
App. No.
14/111,760
Granted
Jun 6, 2017
Kind
B2
Abstract

A Low Voltage, “LV”, network automation system is provided which enables utilities to remotely identify location of LV faults on their networks, isolate these faults and re-energizing the healthy LV circuit by remote control. The hardware for this system is designed to be retrofitted into existing LV switchgears and panels which enables the network changeover to be done cost effectively and with minimum interruption to the network. The system also enables utilities to monitor load flows on the LV networks and identify circuits which are overloaded and gives control room operator options for redistribution of network load where possible.

Claims (16)

1. A switchgear module for a power distribution network, comprising:

a disconnect switching device provided for each phase of a multi-phase AC power signal;

a power line carrier receiver for each phase and adapted to receive a power line carrier, “PLC”, control signal from a remote substation for controlling the disconnect switching device;

a master module adapted to communicate with the disconnect switching devices and the power line carrier receivers and to control the disconnect switching devices using the received PLC control signals; and

a low voltage panel breaker configured to connect and disconnect the AC power signal to a load, the low voltage panel breaker including an overcurrent protection device configured to disconnect the AC power signal from the load when a fault current condition occurs at a current value that is above a predetermined threshold value;

wherein if a PLC control signal is not received by a power line carrier receiver, the master module is adapted to control the respective disconnect switching device using a PLC control signal received by another power line carrier receiver.

2. A switchgear module of claim 1 , wherein the low voltage panel breaker comprises a thyristor switching device for connecting and disconnecting the AC power signal to the load.

3. An automation system for a low voltage distribution network, comprising the switchgear module of claim 2 and further comprising a remote terminal unit adapted to remotely control and monitor the switchgear module and the low voltage panel breaker.

4. The automation system of claim 3 , comprising:

a power line control base station; and

a communications hub adapted to provide communications between the remote terminal unit with the low voltage panel breaker and the switchgear module.

5. The automation system of claim 3 , wherein the remote terminal unit is adapted to identify a location of a faulty section on the network and to allow remotely opening a switch located at the corresponding location for isolating the faulty section.

6. The automation system of claim 4 , wherein a PLC Base Station Admission policy is applied at the low voltage panel breaker, the PLC admission policy being set at the base station using a unique serial identification information that identifies the disconnect switching devices of the switchgear module and the circuit breakers of the low voltage panel breaker.

7. The automation system of claim 4 , wherein a PLC Remote Station admission policy is applied at the switchgear module, which is set using a node key, wherein the disconnect switching devices of the switchgear module and the circuit breakers of the low voltage panel breaker are configured with the same node key.

8. The automation system of claim 4 , wherein the base station is adapted to return its node key to the remote station during a PLC Admission process and the remote station is adapted to only accept a base station having the same node key.

9. The automation system of claim 3 , further comprising a current transformer connected to the low voltage panel circuit-breaker for detecting current fault conditions and/or monitoring a network load.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2018
From: RAYCHEM INTERNATIONAL
To: TE CONNECTIVITY IRELAND LIMITED
Reel/Frame 047242/0444 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2018
From: TE CONNECTIVITY IRELAND LIMITED; TYCO ELECTRONICS UK LTD
To: EA TECHNOLOGY LIMITED
Reel/Frame 047864/0792 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2017
From: NORMOYLE, BRENDAN; QUINN, AIDAN; MCGANN, MELVYN; FOXLEY, PHILIPP; ALLEN, LESLIE; BOUCHE, JEAN-CHRISTOPHE; MCLOUGHLIN, CONOR
To: RAYCHEM INTERNATIONAL; TYCO ELECTRONICS UK LTD.
Reel/Frame 042387/0841 →
Priority Claims (1)
EP 11003205 · Apr 15, 2011 · regional
Continuity (1)
Related Publication 20140035372A1 · Feb 6, 2014