Advanced Digital Broadcast
🇨🇭 Schweiz aktiv
Advanced Digital Broadcast ist ein Schweizer Technologieunternehmen mit polnischen Wurzeln, das Set-Top-Boxen und Software für digitales Fernsehen entwickelt. Das Patentportfolio konzentriert sich auf Nachrichtentechnik und Telekommunikation sowie Software, insbesondere Streaming- und Broadcast-Technologien. Die Anmeldungen decken den Zeitraum von 2003 bis 2024 ab.
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Patente
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01.07.2026
System und Verfahren zur Erweiterung eines Zeitverschiebungspuffers Beim Dynamischen Adaptiven Streaming über Http (dash)
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Zusammenfassung
A method of controlling the streaming of content to a client (300) from a content source (100) using a Dynamic Adaptive Streaming over HTTP (DASH) protocol, the method comprising, at an intermediate device (200) located between the content source (100) and the client (300): receiving a manifest file (310) from the content source (100) in response to a request from the client (300) and editing the received manifest file (310) before delivering it to the client (300), the manifest file (310) including at least one Uniform Resource Identifier (URI) identifying a content element, characterized in that the method further comprises: maintaining, at the intermediate device (200), a local cache (210) of previously obtained segments of the content element; augmenting the manifest file (310) with information from a previously stored version of a manifest for the same content element, retrieved from a memory (230), that includes older segment references not present in the received manifest file (310), so as to extend an available timeshift duration beyond the timeshift depth visible in the received manifest; removing, from the augmented manifest, outdated periods (320) and segment references within a SegmentTimeline (350) whose end times precede a selected cutoff, thereby pruning obsolete content while preserving a continuous timeline of available segments; cleaning the augmented manifest by removing all BaseURL elements, performing SegmentTemplate inheritance for representations (340), and substituting original media and initialization segment references with relative URL placeholders that refer to the locally cached segments in the local cache (210); and updating manifest attributes, including a timeShiftBufferDepth attribute and UTCTiming elements (311), to signal to the client (300) that a locally extended timeshift buffer is available, thereby enabling the client (300) to access historical segments beyond the timeshift depth initially provided by the content source (100). |
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16.07.2025
Wi-Fi-Mesh-Netzwerk
Nachrichtentechnik & Telekommunikation
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Zusammenfassung
Zusammenfassung wird geladen … |
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16.07.2025
Verfahren zur Paarung einer Fernbedienung mit einer Vorrichtung
Anzeige-, Signal- & Kontrolltechnik
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Zusammenfassung
Zusammenfassung wird geladen … |
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16.07.2025
Ferngesteuerte Vorrichtung
Anzeige-, Signal- & Kontrolltechnik
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Zusammenfassung
A remote-controlled device (100), the device comprising a voice interface (120), a remote controller interface (130) and a controller (110); wherein the device is configured to: receive (301), via the voice interface (120), an activation phrase; check (302) whether the application phrase is received from within an allowable activation angle; if so, receive (306), via the remote controller interface (130), a command from the remote controller (51), wherein the command includes a remote controller identifier; store (307) the remote controller identifier as an identifier of a paired remote controller. |
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26.02.2025
Durchflusssteuerungssystem für ein mit einem Verteiler Verbundenes System mit Ventilen
Energie- & Antriebstechnik (Kraftmaschinen)
Steuerungs- & Regelungstechnik
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Zusammenfassung
A flow control system for controlling flow in a system of valves (110, 120, 130) connected to a splitter (106) wherein a pressurized fluid (FP) is supplied to the splitter (106) by a pressurizer (101) driven by a motor (102), the flow control system comprising: a plurality of flow sensors (112, 122, 132), each flow sensor (112, 122, 132) connected individually at an output of one of the valves (110, 120, 130) to measure output flow from that particular valve (110, 120, 130); a plurality of flow controllers (111, 121, 131), each flow controller connected individually to one of the valves (110, 120, 130) configured to output a control signal (C1, C2, C3) to control an opening angle of that particular valve (110, 120, 130) in response to an output from a flow sensor (112, 122, 132) connected at the output of that particular valve (110, 120, 130) and an outlet setpoint (S1, S2, S3) provided for that particular valve (110, 120, 130); a main pressure sensor (104) configured to measure pressure of fluid (FP) output from the pressurizer (101); a main flow controller (103) configured to adjust operation of the motor (102) driving the pressurizer (101) such that the pressure of the pressurized flux (FP) measured by the main pressure sensor (104) is equal to a main pressure setpoint (S); and a main system controller (105) configured to set the main pressure setpoint (S) based on the control signals (C1, C2, C3) such as to set the valve (110, 120, 130) that operates at the largest opening angle to an opening angle defined by a valve opening setpoint (FS) that is a value lower than 100%. |
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02.10.2024
Verfahren zur Herstellung einer Kommunikation in einem Drahtlosen Netzwerk
Nachrichtentechnik & Telekommunikation
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Zusammenfassung
A method for establishing communication between a station (100) and an access point (110) in a wireless network, the method comprising the steps of: at the station (100): measuring (301) a received signal strength (AP_RSSI) of the access point (110); and sending (303) to the access point (110) a connection request and the AP_RSSI; at the access point (110): receiving (304) the connection request and the AP_RSSI from the station (100); measuring (305) a received signal strength (S_RSSI) of the station (100); determining (306) whether the AP_RSSI and the S_RSSI are above a threshold and whether the access point (110) has sufficient bandwidth available to communicate with the station (100) and: if so, sending an acceptance of connection request to the station (100) to continue (307) communication with that station and if not, sending a denial of connection request to the station (100). |
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03.07.2024
Vorrichtung zum Zusammenführen von Transportströmen
Nachrichtentechnik & Telekommunikation
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Zusammenfassung
Zusammenfassung wird geladen … |
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03.07.2024
Verfahren und System zur Identifizierung eines Störers in einem Drahtlosen Netzwerk
Nachrichtentechnik & Telekommunikation
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Zusammenfassung
Zusammenfassung wird geladen … |
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06.03.2024
Oberflächenbearbeitungsvorrichtung und Verfahren zur Verarbeitung von Oberflächenbereichen
Haushalts-, Möbel- & Konsumgüter
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Zusammenfassung
Zusammenfassung wird geladen … |
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06.03.2024
Verfahren zur Auswahl eines Drahtlosen Kanals zur Vermeidung von Interferenzen
Nachrichtentechnik & Telekommunikation
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Zusammenfassung
Zusammenfassung wird geladen … |
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