In-line device and a method for controlling an electrical appliance
A control and monitoring device integrated in an intermediary coupling unit, said intermediary coupling unit being configured to couple an electrical appliance to a power supply, said control and monitoring device comprising a control module configured to change a status of the electrical appliance; a sensor configured to monitor a condition of said electrical appliance and/or an environment thereof; and a processor configured to instruct the control module to change a status of the electrical appliance based on an output of the sensor. Complementary devices and methods of operating such devices are also presented herein.
1 . A control and monitoring device integrated in a switch disconnector, said switch disconnector being configured to couple an electrical appliance to a power supply, said control and monitoring device comprising:
a control module configured to change a status of the electrical appliance, wherein the control module comprises a switch configured to connect the power supply to the electrical appliance in a first configuration and disconnect the power supply from the electrical appliance in a second configuration;
a sensor configured to monitor a condition of said electrical appliance and/or an environment thereof, wherein the sensor comprises a voltage sensor configured to measure a voltage supplied through the switch disconnector to the electrical appliance, and a current sensor configured to measure a current supplied through the switch disconnector to the electrical appliance; and
a processor configured to:
obtain data from the voltage sensor and the current sensor;
monitor the performance of the electrical appliance by repeatedly generating a set of one or more features using the obtained data and comparing each generated feature set to comparison data to identify a fault in the electrical appliance, wherein the feature set comprises one or more of: information relating to a switch-on frequency of one or more components of the electrical appliance, information relating to a duration of switch on time of one or more components of the electrical appliance, information relating to an event during an operation cycle, an amount of power consumed at regular intervals during a time period identified using an event, a duration of an event, frequency data, and a time of occurrence of an event within an operation cycle; and
instruct the control module to change a status of the electrical appliance from the first configuration to the second configuration in response to identifying a fault in the electrical appliance.
2 . The device according to claim 1 , wherein the frequency data comprises harmonic magnitude values.
3 . The device according to claim 1 , wherein the device further comprises a communication module configured to transmit data and wherein, in response to identifying a fault, the processor is further configured to instruct the communication module to begin transmitting data.
4 . The device according to claim 1 , wherein the device further comprises a communication module configured to transmit data, and wherein, upon identifying a fault, the processor is further configured to:
instruct the communication module to transmit data if a communication link exists; and
instruct the control module to change a status of the electrical appliance to a power off status if a communication link does not exist.
5 . The device according to claim 1 , wherein the processor is further configured to instruct the control module to change the status of the electrical appliance from a first status to a second status based on a demand response signal when the demand response signal indicates that a demand for electricity is greater than a supply of electricity.
6 . The device according to claim 5 , wherein the processor is further configured to:
determine a frequency of the power supply based on measurements from the voltage sensor and the current sensor; and
generate the demand response signal when the frequency of the power supply is lower than a first predetermined value.
7 . The device according to claim 6 , wherein the processor is further configured to generate the demand response signal when a moving average of the frequency of the power supply is lower than the first predetermined value.
8 . The device according to claim 6 , wherein the processor is further configured to change the status of the electrical appliance from the second status to the first status in response to determining that the frequency of the power supply is greater than the first predetermined value.
9 . The device according to claim 5 , further comprising a communication module configured to receive the demand response signal.
10 . The device according to claim 5 , wherein the control module comprises a first communication module configured to transmit a control signal to the electrical appliance in response to receiving the demand response signal, wherein the control signal controls the operation of the electrical appliance.
11 . The device according to claim 5 , wherein the processor is further configured to:
determine whether a predetermined duration of time has expired since the demand response signal was received; and
in response to determining that the predetermined duration of time has expired, change the status of the electrical appliance from the second status to the first status.
12 . The device according to claim 11 , wherein the predetermined duration of time is specified in the demand response signal.
13 . The device according to claim 11 , wherein the processor is further configured to:
measure a second duration of time between: changing the status of the electrical appliance to the second status in response to receiving the demand response signal, and changing the status to the first status from the second status; and
determine an amount of energy shifted by responding to the demand response signal by measuring an energy consumption of the electrical appliance for the second duration of time after changing the status of the electrical appliance to the first status from the second status.
14 . The device according to claim 1 , wherein the device further comprises a communication module configured to transmit data and receive a signal, and wherein the processor is further configured to:
instruct the communication module to transmit the data from the voltage sensor and the current sensor; and
instruct the control module to change the status of the electrical appliance based on a received signal.
15 . The device according to claim 1 , wherein the switch disconnector is a rotary isolator.
16 . The device according to claim 1 , wherein the electrical appliance is a heat pump or an air conditioning unit.