IP Library › Granted Patent US 8,305,231
Granted Patent B2
US 8,305,231 · App. 12/532,562 · Granted Nov 6, 2012

Gas appliance monitoring apparatus

Assignee: Panasonic Corporation
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Quick Facts
Patent No.
US 8,305,231
App. No.
12/532,562
Granted
Nov 6, 2012
Kind
B2
Abstract

A gas appliance monitoring apparatus includes a flow rate measurement unit for measuring the gas flow rate, a gas shut-off valve for shutting off a gas flow path at the abnormal time, an information storage unit for storing measurement results of the flow rate measurement unit, a wireless module for transmitting and receiving information, and a communication switch unit for switching a communication frequency band. The wireless module is integrated with a control circuit board forming the flow rate measurement unit and is housed in a gas meter. The wireless module has at least a communication frequency band with a base station and a communication frequency band with a plurality of gas appliances, and transmits an operation start signal detected by a specific gas appliance as appliance information using an appliance wireless module. The continuous use time of the specific appliance is detected or is changed based on the information.

Claims (30)

1. A gas appliance monitoring apparatus for monitoring a use state of a plurality of gas appliances connected to piping after passing through a gas meter, said gas appliance monitoring apparatus installing a wireless module capable of transmitting and receiving directly to and from a plurality of parties using a communication line other than a telephone line, wherein

the gas meter comprises a flow rate measurement unit for measuring a gas flow rate, a gas shut-off valve for shutting off a gas flow path at an abnormal time, a control circuit for performing predetermined processing based on a measurement result of the flow rate measurement unit and outputting a flow rate information, a meter wireless module for transmitting and receiving information to and from a plurality of parties, and a communication switch unit for switching a communication frequency band depending on the parties, wherein

the meter wireless module has at least a communication frequency band with a base station and a communication frequency band with a specific gas appliance, wherein

the specific gas appliance is provided with an appliance information transmitter for detecting an operation start of the appliance and transmitting appliance information to the gas meter, wherein

the appliance information transmitter comprises an appliance detection unit for detecting the operation start of the appliance without receiving a signal from a gas appliance controller and an appliance wireless module for transmitting an appliance operation start signal from the appliance detection unit to the gas meter in a predetermined communication frequency band, wherein

the control circuit has a continuous use time monitor unit for monitoring a continuous operation time of the appliance based on the flow rate information, a by-flow-rate-range continuous use time storage unit presetting and storing a continuously usable time by a flow rate range, a specific appliance monitor unit for monitoring a continuous operation time of the specific gas appliance based on the appliance information transmitted from the appliance information transmitter and the flow rate information, and a specific appliance use time storage unit presetting and storing a continuously usable time of the specific gas appliance, and wherein

when the continuous operation time monitored by the continuous use time monitor unit reaches a stored value in the by-flow-rate-range continuous use time storage unit, a predetermined processing mode is executed and when the continuous operation time monitored by the specific appliance monitor unit reaches a stored value in the specific appliance use time storage unit, the gas shut-off valve is operated on a top-priority basis for stopping supply of the gas and the meter wireless module is used to transmit the continuous use time passage information at least to the base station.

2. A gas appliance monitoring apparatus for monitoring a use state of a plurality of gas appliances connected to piping after passing through a gas meter, said gas appliance monitoring apparatus installing a wireless module capable of transmitting and receiving directly to and from a plurality of parties using a communication line other than a telephone line, wherein

the gas meter comprises a flow rate measurement unit for measuring a gas flow rate, a gas shut-off valve for shutting off a gas flow path at an abnormal time, a control circuit for performing predetermined processing based on a measurement result of the flow rate measurement unit and outputting a flow rate information, a meter wireless module for transmitting and receiving information to and from a plurality of parties, and a communication switch unit for switching a communication frequency band depending on the parties, wherein

the meter wireless module has at least a communication frequency band-with a base station and a communication frequency band with a specific gas appliance, wherein

the specific gas appliance is provided with an appliance information transmitter for detecting an operation start of the appliance and transmitting appliance information to the gas meter, wherein

the appliance information transmitter comprises an appliance detection unit for detecting an operation start of the appliance without receiving a signal from a gas appliance controller and an appliance wireless module for transmitting an appliance operation start signal from the appliance detection unit to the gas meter in a predetermined communication frequency band, wherein

the control circuit has a continuous use time monitor unit for monitoring a continuous operation time of the appliance based on the flow rate information, a by-flow-rate-range continuous use time storage unit presetting and storing a continuously usable time by a flow rate range, and a monitor level change unit for changing a stored value in the by-flow-rate-range continuous use time storage unit based on the appliance information transmitted from the appliance information transmitter, and wherein

when the continuous operation time monitored by the continuous use time monitor unit reaches the stored value in the by-flow-rate-range continuous use time storage unit, a predetermined processing mode is executed and when the monitor level change unit changes the stored value, the gas appliance is monitored using a post-changed stored value until a change reset processing is executed.

3. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the meter wireless module conducts communications using a communication frequency band different from a communication wireless module with the base station and a communication wireless module with the specific gas appliance, and wherein

the communication wireless module with the specific gas appliance is an area communication wireless module having a specified low power wireless communication frequency band and the communication wireless module with the base station is a wide area communication wireless module having a wide area communication frequency band.

4. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the area communication wireless module can also conduct communications with a specific terminal in addition to communications with the specific gas appliance and when the continuous use time passage information is originated, transmits to the specific terminal.

5. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the appliance detection unit comprises a discharge noise detection unit for detecting discharge noise for ignition of the specific gas appliance and an operation start signal conversion unit for converting a signal from the discharge noise detection unit into an appliance operation start signal and outputting the signal to the appliance wireless module.

6. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the appliance detection unit comprises a temperature change detection unit for detecting temperature change occurring with the operation of the specific gas appliance and an operation start signal conversion unit for converting a signal from the temperature change detection unit into an appliance operation start signal and outputting the signal to the appliance wireless module.

7. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the appliance wireless module comprises an operation start signal determination unit for determining whether or not the operation start signal from the appliance detection unit is normal, an identification code change unit for setting or changing a unique identification code for identifying each appliance, and an appliance information transmission unit for transmitting the operation start signal and appliance information to which the identification code is given to the gas meter if the determination result of the operation start signal determination unit is normal.

8. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the specific appliance monitor unit comprises an appliance determination unit for determining which gas appliance is used when the appliance information is transmitted from the appliance information transmitter, a flow rate change detection unit for detecting decrease side flow rate change from increase side flow rate change based on the flow rate information at the time, and an operation time measurement unit for measuring the time.

9. The gas appliance monitoring apparatus as claimed in claim 1 , wherein the specific appliance use time storage unit comprises a continuously usable time storage table storing the continuously usable time varying depending on the type of specific gas appliance in an operation time table of a plurality of stages and a comparison unit for making a comparison between the continuous operation time monitored by the specific appliance monitor unit and the stored value in the storage table and outputs a signal to the wide area communication wireless module or/and the area communication wireless module when the continuous operation time exceeds the stored value.

10. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the monitor level change unit comprises an appliance determination unit for determining which gas appliance is used when the appliance information is transmitted from the appliance information transmitter and a flow rate change detection unit for detecting decrease side flow rate change from increase side flow rate change based on the flow rate information at the time.

11. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the by-flow-rate-range continuous use time storage unit comprises a continuously usable time storage table storing the continuously usable time corresponding to the specific gas appliance based on the appliance information of the appliance determination unit and increase side flow rate change information of the flow rate change detection unit as an operation time table and a comparison unit for making a comparison between the continuous operation time monitored by the continuous use time monitor unit and the stored value in the storage table and outputs a signal to the wide area communication wireless module or/and the area communication wireless module when the continuous operation time exceeds the stored value.

12. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the meter wireless module conducts communications using a communication frequency band different from a communication wireless module with the base station and a communication wireless module with the specific gas appliance, and wherein

the communication wireless module with the specific gas appliance is an area communication wireless module having a specified low power wireless communication frequency band and the communication wireless module with the base station is a wide area communication wireless module having a wide area communication frequency band.

13. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the area communication wireless module can also conduct communications with a specific terminal in addition to communications with the specific gas appliance and when the continuous use time passage information is originated, transmits to the specific terminal.

14. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the appliance detection unit comprises a discharge noise detection unit for detecting discharge noise for ignition of the specific gas appliance and an operation start signal conversion unit for converting a signal from the discharge noise detection unit into an appliance operation start signal and outputting the signal to the appliance wireless module.

15. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the appliance detection unit.cndot.comprises a temperature change detection unit for detecting temperature change occurring with the operation of the specific gas appliance and an operation start signal conversion unit for converting a signal from the temperature change detection unit into an appliance operation start signal and outputting the signal to the appliance wireless module.

16. The gas appliance monitoring apparatus as claimed in claim 2 , wherein the appliance wireless module comprises an operation start signal determination unit for determining whether or not the operation start signal from the appliance detection unit is normal, an identification code change unit for setting or changing a unique identification code for identifying each appliance, and an appliance information transmission unit for transmitting the operation start signal and appliance information to which the identification code is given to the gas meter if the determination result of the operation start signal determination unit is normal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2009
From: FUJII, YUUJI; NAKAMURA, HIROZUMI; MURAKAMI, SHIGERU
To: PANASONIC CORPORATION
Reel/Frame 023628/0586 →
Priority Claims (2)
JP P2007-076332 · Mar 23, 2007 · national
JP P2007-076333 · Mar 23, 2007 · national
Continuity (1)
Related Publication 20100188261A1 · Jul 29, 2010