Air conditioner control system, sensor device control method, and program

US2016201932A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016201932-A1
Application numberUS-201414912740-A
CountryUS
Kind codeA1
Filing dateAug 29, 2014
Priority dateAug 30, 2013
Publication dateJul 14, 2016
Grant date

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  1. Title

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Abstract

Official abstract text for this publication.

An air conditioner control system comprises air conditioners configured to condition an environment in a target space, an integrated controller configured to control the air conditioners based on control parameter data, sensor devices configured to measure the temperature of the target space and transmit measurement data, and wireless master devices configured to create control parameter data based on the measurement data. The wireless master devices each determine sleep times so that at least two sensor devices run out of battery charge around the same time according to the remaining charge amount of each of the sensor devices. The sensor devices each will be in the sleep mode in which power consumption is lower than in the normal mode according to the sleep time decided by the wireless master devices.

First claim

Opening claim text (preview).

1 . A control system, comprising: one or more facility apparatuses configured to condition an environment in a target space; an integrated controller configured to communicate with the one or more facility apparatuses; and a plurality of sensor devices each comprising a battery supplying power for operation and configured to wirelessly communicate with the integrated controller, wherein each of the plurality of sensor devices comprises a battery, and the plurality of sensor devices are configured to be put, according to remaining charge amounts of the batteries, in a sleep mode in which power consumption is lower than in a normal mode so that at least two of the plurality of sensor devices run out of battery charge around the same time. 2 - 9 . (canceled) 10 . The control system according to claim 1 , further comprising: a sleep time decider configured to decide a first interval or a second interval according to the remaining charge amounts of the batteries, the first interval and the second interval differing from each other; and a sleep controller configured to put a target sensor device of the plurality of sensor devices in the sleep mode at the first interval or the second interval decided by the sleep time decider. 11 . The control system according to claim 10 , further comprising: a relay device configured to relay communication between each of the plurality of sensor devices and the integrated controller, wherein the relay device comprises the sleep time decider, and each of the plurality of sensor devices comprises the sleep controller. 12 . The control system according to claim 11 , wherein the relay device further comprises a remaining charge amount estimator configured to estimate the remaining charge amounts of the batteries based on communication history with each of the plurality of sensor devices, and the sleep time decider is configured to decide, according to the remaining charge amounts of the batteries estimated by the remaining charge amount estimator, the first interval or the second interval so that the at least two sensor devices of the plurality of sensor devices run out of battery charge around the same time. 13 . The control system according to claim 11 , wherein the integrated controller comprises apparatus controller configured to control the one or more facility apparatuses based on control parameter data, each of the plurality of sensor devices further comprises a measurer configured to measure an environment value of the target space and send measurement data including the measured environment value to the relay device, the relay device further comprises a control parameter creator configured to create the control parameter data based on the measurement data received from each of the plurality of sensor devices, and the control parameter creator further comprises: a determiner configured to determine whether each of the plurality of sensor devices transmits measurement data including a most recent environment value measured within a predetermined time period; a complementer configured to create, when at least one sensor device of the plurality of sensor devices is determined to not transmit the measurement data including the most recent environment value, the control parameter data for the at least one sensor device by complementation using measurement data including environment values measured prior to the predetermined time period, among the measurement data received from the sensor device; and a creator configured to create, when at least one sensor device of the plurality of sensor devices is determined to transmit the measurement data including the most recent environment value, the control parameter data including the most recent environment value for the at least one sensor device. 14 . The control system according to claim 13 , wherein the complementer is configured to create, when at least one sensor device of the plurality of sensor devices is determined to not transmit the measurement data including the most recent environment value, the control parameter data for the at least one sensor device by complementation using measurement data including environment values measured prior to the predetermined time period among the measurement data received from the sensor device and measurement data received from the sensor devices other than the at least one sensor device. 15 . The control system according to claim 13 , wherein the one or more facility apparatuses comprise a plurality of facility apparatuses, the relay device further comprises an association data storage configured to store association data in which the plurality of sensor devices and the plurality of facility apparatuses are associated with each other, the control parameter creator is configured to create the control parameter data for each of the plurality of facility apparatuses based on the measurement data of which the transmission source is the sensor device associated with each of the plurality of facility apparatuses in the association data, among the measurement data received from each of the plurality of sensor devices, and the apparatus controller is configured to control the corresponding facility apparatus based on the control parameter data for each of the plurality of facility apparatuses created by the control parameter creator. 16 . The control system according to claim 10 , wherein three or more sensor devices of the plurality of sensor devices are provided, the sleep time decider comprises: a classifier configured to classify the three or more sensor devices into a plurality of groups so that two or more sensor devices of the three or more sensor devices belong to at least one group and a largest difference in the remaining charge amount among the batteries of the two or more sensor devices in the same group is smaller than a largest difference in the remaining charge amount among the batteries of all of the three or more sensor devices; and a decider configured to decide, according to the remaining charge amount of the battery of each of the two or more sensor devices classified by the classifier into the same group, the first interval or the second interval so that the two or more sensor devices classified into the same group run out of battery charge around the same time. 17 . The control system according to claim 11 , wherein three or more sensor devices of the plurality of sensor devices are provided, the sleep time decider comprises: a classifier configured to classify the three or more sensor devices into a plurality of groups so that two or more sensor devices of the three or more sensor devices belong to at least one group and a largest difference in the remaining charge amount among the batteries of the two or more sensor devices in the same group is smaller than a largest difference in the remaining charge amount among the batteries of all of the three or more sensor devices; and a decider configured to decide, according to the remaining charge amount of the battery of each of the two or more sensor devices classified by the classifier into the same group, the first interval or the second interval so that the two or more sensor devices classified into the same group run out of battery charge around the same time. 18 . The control system according to claim 12 , wherein three or more sensor devices of the plurality of sensor devices are provided, the sleep time decider comprises: a classifier configured to classify the three or more sensor devices into a plurality of groups so that two or more sensor devices of the three or more sensor devices belong to at least one group and a largest difference in the remaining charge

Assignees

Inventors

Classifications

  • Control systems characterised by their outputs; Constructional details thereof · CPC title

  • Electronic processing · CPC title

  • Control inputs relating to air properties · CPC title

  • Arrangement or mounting of control or safety devices · CPC title

  • characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values · CPC title

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What does patent US2016201932A1 cover?
An air conditioner control system comprises air conditioners configured to condition an environment in a target space, an integrated controller configured to control the air conditioners based on control parameter data, sensor devices configured to measure the temperature of the target space and transmit measurement data, and wireless master devices configured to create control parameter data b…
Who is the assignee on this patent?
Mitsubishi Electric Corp
What technology area does this patent fall under?
Primary CPC classification F24F11/30. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Thu Jul 14 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).