IP Library Granted Patent US 11,881,739
Granted Patent B2
US 11,881,739 · App. 17/771,538 · Granted Jan 23, 2024

Control module for controlling a plurality of power switching elements and a method thereof

Inventors: Bernd Ackermann (Aachen, DE); Matthias Wendt (Wurselen, DE)
Assignee: SIGNIFY HOLDING B.V.
H02J9/06H02J7/0048H02J7/00712H02J50/40H02J50/80
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Quick Facts
Patent No.
US 11,881,739
App. No.
17/771,538
Granted
Jan 23, 2024
Kind
B2
Abstract

A control module ( 120,120 a - b ) for controlling a plurality of power switching elements ( 111 a - d ) arranged for controlling provision of power to one or more wireless network devices ( 125 a - c ); wherein the control module ( 120,120 a - b ) comprises a processor ( 122 ) arranged for: determining which one of the plurality of power switching elements ( 111 a - d ) the control module ( 120,120 a - b ) receives power through; determining a set of the plurality of wireless network devices ( 125 a - c ) which receives power via a first power switching element out of the plurality of power switching elements ( 111 a - d ); determining that the set includes all the wireless network devices which receive power via the first power switching element; determining operational state of each of the wireless network devices in the set; determining whether the control module ( 120,120 a - b ) receives power via the first power switching element; evaluating a first set of conditions; wherein the first set of conditions comprises that the control module ( 120,120 a - b ) does not receive power via the first power switching element and the determined operational state indicates that each of the wireless network devices in the set does not require power, controlling, based on a positive result of the evaluation of the first set of conditions, the first power switching element to cease power provision to the set of wireless network devices.

Claims (47)

1. A control module for controlling a plurality of power switching elements, each power switching element arranged for controlling provision of power to one or more wireless network devices;

wherein the control module comprises a processor arranged for:

determining which one of the plurality of power switching elements the control module receives power through;

determining a set of the plurality of wireless network devices which receives power via a first power switching element;

determining that the set includes all the wireless network devices which receive power via the first power switching element;

determining operational state of each of the wireless network devices in the set;

determining whether the control module receives power via the first power switching element;

evaluating a first set of conditions; wherein the first set of conditions comprises that the control module does not receive power via the first power switching element and the determined operational state indicates that each of the wireless network devices in the set does not require power;

controlling, based on a positive result of the evaluation of the first set of conditions, the first power switching element to cease power provision to the set of wireless network devices.

2. The control module according to claim 1 , wherein the processor is further arranged for:

determining whether at least one other control module receives power from the first power switching element; and

wherein the first set of conditions further comprises that the control module and the at least one other control module do not receive power via the first power switching element.

3. The control module according to claim 1 , wherein the processor is further arranged for,

evaluating a second set of conditions, wherein the second set of conditions comprises

that the control module receives power via the first power switching element and the determined operational state indicates that each of the wireless network devices in the set does to require power,

establishing, based on the positive results of the evaluation of the second set of conditions, an auxiliary power path via which the control module can receive power and

controlling the first power switching element to cease power provision to the set of wireless network devices, upon establishment of the auxiliary power path.

4. The control module according to claim 3 , wherein the auxiliary power path comprises a power path for receiving power from an energy storage element; wherein power provision from the auxiliary power path is not controlled via the first power switching element.

5. The control module according to claim 4 , wherein the processor is further arranged for determining a charging level of the energy storage element; and

wherein the second set of conditions further comprises that the determined charging level is above a threshold.

6. The control module according to claim 5 , wherein the processor is further arranged for, on the condition that the determined charging level is below a threshold,

controlling the first power switching element to resume providing power to the control module.

7. The control module according to claim 1 , wherein the processor is further arranged for:

evaluating a second set of conditions, wherein the second set of conditions comprises that the control module receives power via the first power switching element and the determined operational state indicates that each of the wireless network devices in the set does not require power,

assigning, based on the positive results of the evaluation of the second set of conditions, at least one other control module to perform control operations associated with the control module; wherein the control operations comprise controlling the operational state of at least the set of wireless network devices and/or controlling the plurality of power switching elements; and

controlling the first power switching element to cease power provision to the set of wireless network devices upon assigning of the at least one other control module to perform control operations associated with the control module.

8. The control module according to claim 1 , wherein the control module further comprises a memory arranged for storing a list of a plurality of other control modules, and for each of the other control modules a list of corresponding power switching elements via which each of the other control modules is arranged for receiving power.

9. The control module according to claim 8 , wherein the processor is further arranged for:

monitoring whether a wireless network device is required to be controlled by at least one other control module;

monitoring whether power provision via the power switching element corresponding to the at least one other control module is ceased; and

on the condition that the power provision is ceased;

controlling the power switching element corresponding to the one other control module to provide power at least to the one other control module.

10. The control module according to claim 1 , wherein the wireless network devices are lighting devices and the control module is arranged for controlling operational state of the lighting devices.

11. An electrical distribution board comprising a plurality of power switching elements and a control module according to claim 1 .

12. A system for controlling a plurality of power switching elements;

comprising:

a wireless communication network comprising a plurality of wireless network devices;

a control module according to claim 1 .

13. A method for controlling a plurality of power switching elements; wherein the method comprises the steps of:

determining which one of the plurality of power switching elements, the control module receives power through;

determining a set of the plurality of wireless network devices which receives power via a first power switching element;

determining that the set includes all the wireless network devices which receive power via the first power switching element;

determining operational state of each of the wireless network devices in the set;

determining whether the control module receives power via the first power switching element;

evaluating a first set of conditions; wherein the first set of conditions comprises that the control module does not receive power via the first power switching element and the determined operational state indicates that each of the wireless network devices in the set does not require power;

controlling, based on a positive result of the evaluation, the first power switching element to cease power provision to the set of wireless network devices.

14. A non-transitory computer readable medium comprising instructions which, when the instructions are executed by a computer, cause the computer to carry out the steps of the method of claim 13 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2022
From: ACKERMANN, BERND; WENDT, MATTHIAS
To: SIGNIFY HOLDING B.V.
Reel/Frame 059862/0016 →
Priority Claims (1)
EP 19205796 · Oct 29, 2019 · regional
Continuity (1)
Related Publication 20220376545A1 · Nov 24, 2022