Sub-metering hardware for measuring energy data of an energy consuming device

Inactive Publication Date: 2011-08-18
GENERAL ELECTRIC CO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0024]The device disclosed herein is a home energy gateway (HEG) that enables all the key functions of the HEM described above, and enables the flow of data between networks having different physical, link, network, transport and / or application layers, provides a lowest cost product to the consumer with the flexibility to interface with the HEM from any consumer electronics product already available in the home and / or replace any HEM in a home energy management network.
[0055]The HEG plays a key role for the Utility company in registering and communicating with devices within the home. Typical devices that have to work with the smart grid thru the smart meter need to be registered with the smart meter. This means that for every energy consuming device that is installed in a consumer's home, the consumer has to contact the Utility and provide them an install code to register the device, which requires time and resources for both the Utility Company and the consumer. Once the HEG is registered to the smart meter, the HEG then acts as a single point gateway for the Utility Company. In this way all other devices in the home are registered with the HEG and communicate with the HEG. The HEG then summarizes device actions, responses and status and communicates a single message to the Utility Company. This saves resources and infrastructure for the Utility Company's meter system as there is only one device communicating from the home, rather than 10 to 15 devices receiving messages, which would otherwise require a large amount of bandwidth.
[0057]In the same way, energy and water consumption in a home is an indicator of daily life in a home. It can indicate activity in a home, the number of people in a home, the health of people in a home, safety and intrusion in a home.

Problems solved by technology

Currently Utility companies commonly charge a flat rate for energy, but with the increasing cost of fuel prices and high energy usage during certain parts of the day, Utility companies have to buy more energy to supply customers during peak demand.
However, there is no active control beyond the mere on / off switching.
Similarly, known systems do not communicate directly with the appliance using a variety of communication methods and protocols, nor is a modular and standard method created for communication devices to interface and to communicate operational modes to the main controller of the appliance.
Both of the current existing types have significant disadvantages due to higher consumer cost, low flexibility and increased system complexity.
The first category requires a large upfront cost to the consumer, because the cost of providing an integrated display on the HEM very expensive.
In addition, the electronics required to drive the display is complex and expensive.
The second category of HEM involves a substantial cost to provide the server infrastructure and data transfer.
In addition, this type of HEM must be connected continuously with a remote server otherwise energy data logging and energy saving commands for the devices in the home will be lost during service disruptions.
Therefore this second configuration is very limiting in areas where Internet penetration is very low
Current HEM systems result in payback of about 3-5 years at best.
Therefore, since the standard life of an electronic device is about 5 years, the consumer is never paid back for their investment; as they will need to procure a new device before the investment payback period is reached.

Method used

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  • Sub-metering hardware for measuring energy data of an energy consuming device
  • Sub-metering hardware for measuring energy data of an energy consuming device
  • Sub-metering hardware for measuring energy data of an energy consuming device

Examples

Experimental program
Comparison scheme
Effect test

first example

A First Example

[0164]A dishwasher cycle is delayed because of high energy costs. However the water heater is not heating either. The HEG provides the consumer with the option of waiting until the water heater has caught up before starting the dishwasher.

[0165]Another dishwasher option: The consumer can determine to not allow (or always require) heated dry, extra pre-washes, or extra heat on a dishwasher at any time, despite what is selected at the controls of the dishwasher. This feature may be valuable for people whose children are assisting with meal clean up.

second example

A Second Example

[0166]The consumer starts their dryer in a delay start mode, but before the delay time is completed energy price goes up. The consumer will be asked if they still want the dryer to start when scheduled.

[0167]An additional dryer example is to limit the maximum heat regardless of the energy level selected. This balance of saving energy at the expense of drying time could be made at any time, or could be done to prevent children or spouse from damaging garments by drying at too high a temperature.

[0168]An example of using weather is to prohibit dryer operation when the external temperature was above 80 degrees to avoid competing with the air conditioning, or to prohibit dryer use if the sun was shining and line-dry clothes instead.

third example

A Third Example

[0169]The consumer can automate the decision for which of various modes he would like his water heater to operate in. Depending on the water heater, the modes that can be selected from include: Electric Resistive Heaters Cal Rod, Electric Heat Pump, Gas, Solar, and Off. He can use electric price, weather, gas price and home occupancy to select from.

[0170]A washing machine example. The consumer could use this feature to control which temperatures can be selected, or prohibit using the washer at certain electric costs.

[0171]The improved user interface is also an advantage when programming devices. Programmable thermostats are often hard to program via their limited user interfaces. For example, you have to push the menu button twice, then the left button, then the down button to set the hour, then the left button, until a full schedule of 7 days with 4-6 events per day have been loaded. The user interface on the HEG with a computer or smartphone can display it graphical...

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PUM

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Abstract

A sub-meter device for use in a home energy management (HEM) network. The sub-meter device measure power characteristics related to usage of an appliance (or other device) within a HEM network and provides such data to a home energy controller or the like. The sub-meter device can include one or more sensors, such as a current transformer, Rogowski coil, shunt resistor, or hall effect sensor, for collecting data relating to at least one of real power consumption, reactive power consumption, line frequency, line voltage, power factor, leading / lagging voltage-current comparison, and apparent power, etc.

Description

RELATED APPLICATIONS[0001]This application claims priority to U.S. Provisional Application Ser. No. 61 / 304,712, filed on, Feb. 15, 2010, which is incorporated herein by reference in its entirety.BACKGROUND OF THE DISCLOSURE[0002]The following disclosure relates to energy management, and more particularly to energy management of household consumer appliances, as well as other energy consuming devices and / or systems found in the home. The present disclosure finds particular application to a device which controls operation of consumer appliances, as well as other energy consuming devices and / or systems, and acts as a gateway between a Utility company network and the consumer appliances, as well as other energy consuming devices and / or systems. The controller / gateway device to be discussed below is at times called herein a Home Energy Gateway (HEG).[0003]Currently Utility companies commonly charge a flat rate for energy, but with the increasing cost of fuel prices and high energy usage ...

Claims

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Application Information

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IPC IPC(8): G06F1/26G01R21/00G06F19/00
CPCG06Q50/06G06Q10/06H02J2310/12
InventorKOBRAEI, HENRYBESORE, JOHNBULTMAN, ROBERTWORTHINGTON, TIMOTHYFINCH, MICHAEL F.DRAKE, JEFF
OwnerGENERAL ELECTRIC CO