IP Library Granted Patent US 9,031,116
Granted Patent B2
US 9,031,116 · App. 13/704,044 · Granted May 12, 2015

Monitoring of power-consumption

Inventors: Philip Young (Northampton, GB); Andrew James Heaton (Chepstow, GB)
Assignee: enModus Limited
H04B1/7075H04Q9/00G01R21/006G06F17/00H04Q2209/10H04Q2209/60H04Q2209/43H04Q2209/30
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Quick Facts
Patent No.
US 9,031,116
App. No.
13/704,044
Granted
May 12, 2015
Kind
B2
Abstract

A power-consumption monitoring device, for taking measurements of the power consumed by an appliance. The device is connectable to a mains electrical circuit and operable to transmit the measurements to a master device through the circuit. Also presented is a master device, for receiving over a mains electrical circuit power-measurements transmitted by one or more power-consumption monitoring devices. Also presented is a power-line communications network comprising: a master device; and one or more power-consumption monitoring devices.

Claims (38)

1. A power-consumption monitoring device, for taking measurements of the power consumed by an appliance,

the device being connectable to a mains electrical circuit and operable to transmit the measurements to a master device through the circuit,

wherein the device is adapted to:

receive a spread-spectrum timing-reference signal from the master device;

detect a code-phase of the received reference signal; and

transmit the measurements to the master device with a timing that is defined relative to the detected code-phase.

2. The power-consumption monitoring device according to claim 1 , wherein the spread-spectrum reference signal is periodically modulated by a synchronisation symbol,

the monitoring device being adapted to:

determine a timing by detecting the synchronisation symbol.

3. The power-consumption monitoring device according to claim 1 , comprising a time-domain correlator for detecting the code-phase.

4. The power-consumption monitoring device according to claim 1 , wherein the monitoring device is adapted to transmit to the master device an upstream signal which comprises a spreading code modulated by a data message, the data message including the power measurements,

a transmit time-interval in which the upstream signal is transmitted and/or a transmit code-phase of the spreading code being defined relative to the detected code-phase of the reference signal.

5. The power-consumption monitoring device according to claim 4 , wherein the monitoring device has:

a configuration mode, in which it is adapted to:

transmit the upstream signal using a first, predetermined time interval and/or code-phase reserved for negotiation with the master device; and

receive, from the master device, configuration information assigning a second, different time interval and/or code-phase, and

a normal mode in which it is adapted to:

transmit the upstream signal using the assigned, second time interval and/or code-phase.

6. The power consumption monitoring device according to claim 4 , wherein the device is adapted to transmit the upstream signal in a frequency band that is different from the frequency band of the spread-spectrum timing-reference signal received from the master device.

7. The power-consumption monitoring device according to claim 1 , wherein the device is further adapted:

to measure the energy consumed by the appliance in each of a series of e intervals, and maintain a first cumulative sum of the resulting energy measurements;

to periodically transmit, to the master device, a first quantised value representing the cumulative sum; and

to subtract the transmitted quantised value from the cumulative sum.

8. The power-consumption monitoring device of claim 7 , wherein the quantisation used to generate the first quantised value is non-uniform, most preferably floating point quantisation.

9. A master device, for receiving over a mains electrical circuit power-measurements transmitted by one or more power-consumption monitoring devices,

the master device being adapted to generate and transmit a spread-spectrum timing-reference signal through the mains electrical circuit to the one or more monitoring devices,

the device being further adapted to receive the power-measurements from each of the one or more monitoring devices with a predetermined timing that is defined relative to a code-phase of the transmitted timing-reference signal.

10. The master device according to claim 9 , wherein the device is adapted to receive from each of the one or more monitoring devices an upstream signal which comprises a spreading code modulated by a data message, the data message including the power measurements,

the master device being further adapted to identify each individual monitoring device by the timing of reception of its upstream signal and/or the code-phase of the spreading code in the upstream signal.

11. The master device according to claim 10 , wherein the device is adapted to transmit the spread-spectrum timing-reference signal in a frequency band that is different from a frequency band in which the upstream signals are received.

12. The master device according to claim 9 , comprising a frequency-domain correlator for detecting the code-phase of the upstream signal from each of the one or more monitoring devices.

13. A power-line communications network comprising:

a master device for receiving over a mains electrical circuit power-measurements transmitted by one or more power-consumption monitoring devices, the master device being adapted to generate and transmit a spread-spectrum timing-reference signal through the mains electrical circuit to the one or more monitoring devices, the master device being further adapted to receive the power-measurements from each of the one or more monitoring devices with a predetermined timing that is defined relative to the code-phase of the transmitted timing-reference signal; and

a power-consumption monitoring device, for taking measurements of the power consumed by an appliance, the monitoring device being connectable to a mains electrical circuit and operable to transmit the measurements to the master device through the circuit, wherein the monitoring device is adapted to:

receive a spread-spectrum timing-reference signal from the master device;

detect a code-phase of the received reference signal; and

transmit the measurements to the master device with a timing that is defined relative to the detected code-phase.

14. The power-line communication network of claim 13 wherein the network comprises a plurality of power-consumption monitoring devices.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECTIVE ASSIGNMENT TO RE-RECORD ASSIGNMENT PREVIOUSLY RECORDED ON REEL 029464 FRAME 0023. ASSIGNOR(S) HEREBY CONFIRMS THE TO CORRECT INVENTOR NAME JAMES HEATON TO ANDREW JAMES HEATON. Recorded Dec 19, 2012
From: YOUNG, PHILIP; HEATON, ANDREW JAMES
To: ENMODUS LIMITED
Reel/Frame 029499/0412 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2012
From: YOUNG, PHILIP; HEATON, JAMES
To: ENMODUS LIMITED
Reel/Frame 029464/0023 →
Priority Claims (1)
GB 1010728.2 · Jun 25, 2010 · national
Continuity (1)
Related Publication 20130215933A1 · Aug 22, 2013