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1 (19) TEPZZ 468_B_T (11) EP B1 (12) EUROPEAN PATENT SPECIFICATION (4) Date of publication and mention of the grant of the patent: Bulletin 1/38 (1) Int Cl.: G08B 2/00 (06.01) (21) Application number: (22) Date of filing: (4) System and method of alarm installation and configuration System und Verfahren zur Alarminstallation und -konfiguration Système et procédé d installation et configuration d alarme (84) Designated Contracting States: AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR () Priority: US (43) Date of publication of application: Bulletin 13/03 (73) Proprietor: Honeywell International Inc. Morristown, NJ (US) (72) Inventor: Hogg, David William Bain Morristown, NJ New Jersey (US) (74) Representative: Houghton, Mark Phillip Patent Outsourcing Limited 1 King Street Bakewell, Derbyshire DE4 1DZ (GB) (6) References cited: WO-A2-09/ US-A US-A EP B1 Note: Within nine months of the publication of the mention of the grant of the European patent in the European Patent Bulletin, any person may give notice to the European Patent Office of opposition to that patent, in accordance with the Implementing Regulations. Notice of opposition shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention). Printed by Jouve, 7001 PARIS (FR)

2 1 EP B1 2 Description FIELD [0001] The application pertains to systems and methods to facilitate installation of regional monitoring systems. More particularly, the application pertains to such systems and methods usable in the installation of some or all of the units, sensors, or detectors distributed through a region being monitored. BACKGROUND [0002] When installing an alarm system, it can be difficult to get a map of the locations where the distributed devices, such as condition detectors, or sensors are located. [0003] The problem is compounded for wireless monitoring systems, an increasing population, as the detectors, or sensors, cannot be traced back to a specific hard wired bus device. It can also be tedious and error prone for an installer to have to manually take notes on the locations of the devices. [0004] US190081A1 discloses mapping wireless signals with motion sensors, for obtaining position information for mobile stations such as cellular or other wireless communications devices, in an indoor environment. A displacement device for mapping wireless signal fingerprints includes motion sensors and at least one of a received signal strength indicator (RSSI) sensor and a round trip time (RTT) sensor. The motion sensors may include a pedometer and one or more sensors to receive turn information. The position of each measurement location is determined using the initialized position and data from the motion sensors. The measurement position along with the RSSI and/or RTT measurement is stored in a database, from which a map can be generated. The position of the access point may be determined using the RSSI measurement or RTT measurement. SUMMARY [000] The present invention provides an apparatus according to claim 1 of the appended claims. BRIEF DESCRIPTION OF THE DRAWING [0006] Fig. 1 is a block diagram of a system in accordance herewith. DETAILED DESCRIPTION [0007] While disclosed embodiments can take many different forms, specific embodiments thereof are shown in the drawings and will be described herein in detail with the understanding that the present disclosure is to be considered as an exemplification of the principles thereof as well as the best mode of practicing same, and is not intended to limit the application or claims to the specific embodiment illustrated. [0008] Moving from manually created maps to maps created, at least in part with interactive communications devices can be expected to promote accuracy and increase installer productivity. In one aspect, using a smart phone and an associated software application to record device placement and device parameters, and any other relevant information, can make the documentation creation process easier and more efficient. Additionally, systems with better over-all documentation should be easier to maintain. [0009] In accordance with the present system and method, using a cellular-type communications device for example, a smart phone, an installer can easily create a virtual map of the environment in which an alarm unit is being installed, in a new or an existing monitoring system, as well as details of the installation itself. This map could then be used in conjunction with any previously existing physical, or electronic, building maps. [00] As discussed subsequently, the phone can record movement. For example, the recorded movements of the installer during the installation process can be used to create a virtual map of the building. That map can be annotated, in real-time during the installation process, by the installer as he/she moves from room to room, or area to area installing units, sensors, or detectors of a monitoring system. [0011] Each new room can be assigned either a text or voice tag. Voice recognition software could convert voice tags to text. The movement could be detected by the onboard accelerometer. Alternately, a GPS system can be used. When installing specific device types, it will be possible to cross-reference other devices, in the case of hardwired detectors on a RIO, to the RIO to which they are going to be connected. Wireless, or RF devices, become easier to locate and maintain as they have specific locations that can be easily found. [0012] The equipment ID mark, for example, a serial number, or other information which could be represented by a machine readable code, such as a barcode, or an optical code, can then be photographed. The location within the room recorded. [0013] The bar code or optical, character, code can also be scanned and the recognized information can be loaded into the cell phone. The device type can be cross referenced in the system and can also be annotated, again by either a text or voice tag. [0014] Fig. 1 illustrates a system in accordance herewith. System includes a regional monitoring system 12 which monitors events in a region R. System 12 includes a control element, or panel 14 which is in wireless communication with a plurality of sensors or detectors 16 which have previously been installed through the region R. Sensor or detectors 16 can include position detectors, movement detectors, glass breakage detectors, smoke detectors, fire detectors, or gas detectors, all without limitation. 2

3 3 EP B1 4 [001] Monitoring panel 14 can be implemented with control circuits 14-1, a local data base 14-2, an internet, or intranet communications interface 14-2 for communication with server, a unit interface 14-4 for wired or wireless communications with members of the plurality of previously installed units 16. [0016] The control circuits 14-1 can be implemented, in part with one or more programmed processors 14a. The processors 14a execute pre-store control software 14b. The control circuits 14 can carry out bidirectional communications with the units 16 as well as the server as would be understood by those of skill in the art. [0017] As illustrated in Fig. 1, another detector, unit 18, is ready for installation. Unit 18 carries bar coded or character coded information 18a. The information 18a can include equipment identification information, serial number or other parametric information relative to the respective unit. [0018] The monitoring system panel 14 can also be in wireless communication with the unit 18, when installed, and also can be in wireless communication with a server. Server can include a database of information pertaining to the plurality of units 16, for use by the panel 14. The monitoring panel 14 thus has on-going access to the contents of database -1 and can update same in response to its communications with the units 16. [0019] A smart phone 28 can be in wireless communication with a phone server. Smart phone 28 can download from the server an installation support application The application 28-1 can be stored for execution in circuitry at the phone 28. [00] The phone 28 carries peripheral devices such as a display 32, a keypad 34, audio input and output devices 36, a reader of bar codes or optical character codes 38, location tracking circuits and a camera with a port 42. The phone 28 can be in communication with the monitoring panel 14 directly, via server or via server, all without limitation. [0021] When the unit 18 is to be installed, the installer can use the phone 28 to read the coded information 18a concerning the unit 18 and forward that information to be stored in database -1. Additionally, the installer via keypad 34 and audio input circuitry 36 enter the location of the unit 18 in the region R. A portion of the region R, in the vicinity of the location of unit 18 can be visually presented 32a on the display device 32 of the phone 28 for the installer to view and to annotate with audibly enter tags, or keypad entered tags. The tags can provide additional information for the monitoring panel 14 and can also be incorporated into an installation map of the region R as noted previously. [0022] In summary, in a disclosed implementation the smart phone 28 can be used in combination with a downloaded application 28-1 that can automatically record the details of the installation and provide an electronic map which will facilitate the installation process. Additionally, when it is necessary to visit the site for maintenance, the electronic map will be able to indicate the location of the faulty device. [0023] The electronic location information can be exported to a personal computer, or to the monitoring system control panel 14. Asset tracking can also be provided for the alarm installer or other personnel. This capability could be implemented using any smart phone, or smart device-type (for example a PDA), communications device. In another aspect, this functionality could be implemented by having a phone interface coupled to the monitoring system control panel. The configuration information can then be entered automatically using wireless technologies such as blue tooth, wifi, or a USB. [0024] Further, as those of skill will understand, that parameters and other information concerning the detectors or sensors can be included in the on-line database -1 of installable products, maintained for example at server. The database -1 can be accessed via a barcode or optically readable code on or associated with the respective installable produce. [002] From the foregoing, it will be observed that numerous variations and modifications may be effected without departing from the spirit and scope of the invention. It is to be understood that no limitation with respect to the specific apparatus illustrated herein is intended or should be inferred. It is, of course, intended to cover by the appended claims all such modifications as fall within the scope of the claims. Further, logic flows depicted in the figures do not require the particular order shown, or sequential order, to achieve desirable results. Other steps may be provided, or steps may be eliminated, from the described flows, and other components may be add to, or removed from the described embodiments. Claims 1. An apparatus, comprising: a monitoring system control panel; at least one unit to monitor a selected condition, the unit carrying bar coded or optical character coded parametric information; and an installer-operated communications device, the communications device having a user input interface, a bar code or optical character code reader, circuitry for storage of unit location information, and circuitry for location tracking through a region, wherein the communications device is adapted to read the coded information carried by the unit and forward that information and position information to a database and wherein the control panel has on-going access to the database. 2. An apparatus as in claim 1 where the circuitry to track movement through the region includes additional cir- 3

4 EP B1 6 cuitry to combine unit location information with tracked movement. ein installiererbetriebenes Kommunikationsgerät, wobei das Kommunikationsgerät aufweist: 3. An apparatus as in claim 2 which includes circuitry to display a map of at least a portion of the region along with unit location information. 4. An apparatus as in claim 3 which includes circuits to establish identifiers associated with at least some portions of the region. eine Benutzereingabeschnittstelle, ein Lesegerät für Strichcode oder optischen Zeichencode, Schaltungsanordnung zum Speichern von Standortsinformationen der Einheit und Schaltungsanordnung zur Standortverfolgung durch einen Bereich,. An apparatus as in claim 4 where the identifiers comprise at least one of audible or visual tags. 6. An apparatus as in claim which includes circuits to convert audible tags, to visual tags. 7. An apparatus as in claim where the communications device includes at least one of a movement sensor, or global positioning circuitry. 8. An apparatus as in claim which includes circuits to generate a visually displayable map indicative of a portion of the installation region. 9. An apparatus as in claim 8 where the map generating circuits can display unit location and, tags associated therewith.. An apparatus as in claim where the unit is selected from a class which includes at least location sensors, glass break sensors, motion detectors, smoke detectors, gas detectors, and fire detectors. 11. An apparatus as in claim where the communications device can transmit unit related location information to a monitoring system control unit either, directly, or, via communications network wobei das Kommunikationsgerät so ausgelegt ist, dass es die von der Einheit getragenen codierten Informationen ausliest und diese Informationen und Positionsinformationen an eine Datenbank weiterleitet, und wobei das Bedienfeld permanenten Zugriff auf die Datenbank hat. 2. Vorrichtung nach Anspruch 1, wobei die Schaltungsanordnung zum Verfolgen von Bewegung durch den Bereich zusätzliche Schaltungsanordnung zum Kombinieren von Standortinformationen der Einheit mit verfolgter Bewegung umfasst. 3. Vorrichtung nach Anspruch 2, welche Schaltungsanordnung zum Anzeigen einer Karte mindestens eines Abschnitts des Bereichs zusammen mit Standortinformationen der Einheit umfasst. 4. Vorrichtung nach Anspruch 3, welche Schaltungen zum Erstellen von Kennungen umfasst, die mit mindestens einigen Abschnitten des Bereichs assoziiert sind.. Vorrichtung nach Anspruch 4, wobei die Kennungen mindestens eines von akustischen oder optischen Tags umfassen. 12. An apparatus as in claim 1 where the communications device can transmit unit related location information to the monitoring system control panel, either directly, or via a communications network, and where the unit is selected from a class which includes at least location sensors, glass break sensors, motion detectors, smoke detectors, gas detectors, and fire detectors Vorrichtung nach Anspruch, welche Schaltungen zum Umwandeln von akustischen Tags in optische Tags umfasst. 7. Vorrichtung nach Anspruch, wobei das Kommunikationsgerät mindestens eines von einem Bewegungssensor oder einer Schaltungsanordnung für globale Positionsbestimmung umfasst. Patentansprüche 1. Vorrichtung, umfassend: 0 8. Vorrichtung nach Anspruch, welche Schaltungen zum Erzeugen einer optisch darstellbaren Karte umfasst, die einen Abschnitt des Installationsbereichs anzeigt. ein Überwachungssystem-Bedienfeld; mindestens eine Einheit zum Überwachen einer ausgewählten Bedingung, wobei die Einheit strichcodierte oder mit optischen Zeichen codierte Parameterinformationen trägt; und 9. Vorrichtung nach Anspruch 8, wobei die Kartenerzeugungsschaltungen den Standort der Einheit und damit assoziierte Tags anzeigen können.. Vorrichtung nach Anspruch, wobei die Einheit aus 4

5 7 EP B1 8 einer Klasse ausgewählt ist, die mindestens Standortsensoren, Glasbruchsensoren, Bewegungsdetektoren, Rauchdetektoren, Gasdetektoren und Feuerdetektoren umfasst. 11. Vorrichtung nach Anspruch, wobei das Kommunikationsgerät einheitsbezogene Standortinformationen entweder direkt oder über ein Kommunikationsnetz an eine Überwachungssystem-Steuereinheit senden kann. partie de la région avec les informations d emplacement de l unité. 4. Appareil selon la revendication 3, qui comprend des circuits pour établir des identificateurs associés à au moins quelques parties de la région.. Appareil selon la revendication 4, dans lequel les identificateurs comprennent au moins soit des repères audibles, soit des repères visuels. 12. Vorrichtung nach Anspruch 1, wobei das Kommunikationsgerät einheitsbezogene Standortinformationen entweder direkt oder über ein Kommunikationsnetz an das Überwachungssystem-Bedienfeld senden kann, und wobei die Einheit aus einer Klasse ausgewählt ist, die mindestens Standortsensoren, Glasbruchsensoren, Bewegungsdetektoren, Rauchdetektoren, Gasdetektoren und Feuerdetektoren umfasst. Revendications 1. Appareil comportant : un panneau de commande de système de surveillance ; au moins une unité pour surveiller une condition sélectionnée, cette unité portant des informations paramétriques codées par code à barres ou par codage optique de caractères ; un dispositif de communication actionné par l installateur, ce dispositif de communication ayant une interface d entrée de l utilisateur, un lecteur de code à barres ou un lecteur optique de code de caractères, une circuiterie pour le stockage d informations d emplacement d unité, et une circuiterie pour suivre l emplacement à travers une région, dans lequel le dispositif de communication est adapté de façon à lire les informations codées portées par l unité et à retransmettre ces informations et les informations de position à une base de données, et dans lequel le panneau de commande a un accès constant à la base de données. 2. Appareil selon la revendication 1, dans lequel la circuiterie pour suivre le mouvement à travers la région comprend une circuiterie supplémentaire pour combiner les informations d emplacement de l unité avec le mouvement suivi Appareil selon la revendication, qui comprend des circuits pour convertir les repères audibles en repères visuels. 7. Appareil selon la revendication, dans lequel le dispositif de communication comprend au moins soit un capteur de mouvement, soit une circuiterie de positionnement mondial. 8. Appareil selon la revendication, qui comprend des circuits pour produire une carte affichable visuellement indicatrice d une partie de la région d installation. 9. Appareil selon la revendication 8, dans lequel les circuits de production de carte peuvent afficher l emplacement de l unité et les repères associés à celuici.. Appareil selon la revendication, dans lequel l unité est sélectionnée parmi une classe qui comprend au moins des capteurs d emplacement, des capteurs de bris de vitre, des détecteurs de mouvement, des capteurs de fumée, des détecteurs de gaz, et des détecteurs d incendie. 11. Appareil selon la revendication, dans lequel le dispositif de communication peut transmettre des informations d emplacement liées à l unité à une unité de commande de système de surveillance soit directement, soit via un réseau de communication. 12. Appareil selon la revendication 1, dans lequel le dispositif de communication peut transmettre des informations d emplacement liées à l unité au panneau de commande du système de surveillance, soit directement, soit via un réseau de communication, et dans lequel l unité est choisie parmi une classe qui comprend au moins des capteurs d emplacement, des capteurs de bris de vitre, des détecteurs de mouvement, des détecteurs de gaz et des détecteurs d incendie. 3. Appareil selon la revendication 2, qui comprend une circuiterie pour afficher une carte d au moins une

6 EP B1 6

7 EP B1 REFERENCES CITED IN THE DESCRIPTION This list of references cited by the applicant is for the reader s convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard. Patent documents cited in the description US A1 [0004] 7

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