Abstract:
Various embodiments of systems, apparatus, and methods are described for assembling at least one transport stream from satellite transponder signals. In one example, the method includes capturing at least one satellite feed, the at least one satellite feed including a plurality of transponder signals; demodulating each of the plurality of transponder signals, each demodulated transponder signal corresponding to a transport stream including a plurality of input streams; parsing one or more selected streams from the plurality of input streams; assembling at least one new transport stream from the one or more selected streams; modulating the at least one new transport stream to generate at least one new transponder signal; adding the at least one new transponder signal to a channel stack; and transmitting the channel stack to a receiving device.
Abstract:
Systems and methods are provided for processing and disseminating video data. A video disseminating portal is provided to show orders for video data, including status information of each order. A control in the portal is provided to launch a video display interface to preview or play an ordered video data. A video cropping tool in the video display interface allows a user to define one more areas within the ordered video data. The cropped video is generated along a pan path. In some embodiments, the cropped video is generated with variable zoom and orientation. The one or more defined areas are used to generate corresponding one or more cropped videos, which are derived from the ordered video data. The location and area of a cropped video is displayed in context of the ordered video and can be previewed using the video display interface. A cropped video is also displayed as an entry in the portal in relation to the entry for the ordered video data.
Abstract:
According to the invention the cascadable multiple dwelling satellite signal distribution device (1 ) comprises at least one power supply module (170, 270), being connected to the respective convertor modules (100, 200) and at least one of the corresponding output connectors (160, 260), said at least one power supply module (170, 2070) being configured to: - receive power from at least one of the respective output connectors (160, 260); and - provide this received power to its plurality of convertor modules (100, 200)..
Abstract:
Systems and methods are provided for improving the signal quality and performance in a cable operator's Hybrid Fiber Coax (HFC) plant by adding DOCSIS intelligence to components within the HFC plant. These intelligent DOCSIS devices, referred to here as DOCSIS Intelligent Nodes (DINs), intercept the upstream signal from cable modems and set top boxes, and perform various types of signal processing on the signals based upon knowledge of the signal characteristics obtained from CMTS control structures such as MAPs and Upstream Channel Descriptors (UCDs). The DIN functionality can be integrated into any type of device found in HFC networks such as RF amplifiers and fiber nodes.
Abstract:
An Internet protocol low noise block downconverter (IP LNB) assembly, which is within a satellite dish assembly, may be operable to determine one or more baseline settings of the satellite dish assembly. The IP LNB assembly may monitor, periodically or aperiodically, one or more current settings that may correspond to the determined one or more baseline settings to identify deviations of the one or more current settings from the baseline settings. The results of the monitoring may be communicated to a satellite service provider. The satellite service provider may provide maintenance and/or service management for the satellite dish assembly based on the communicated results of the monitoring. The IP LNB assembly may determine a location setting via a GNSS module and determine an alignment setting via a directional sensor in the IP LNB assembly. The IP LNB assembly may determine a received signal strength based on a RSSI.
Abstract translation:位于卫星天线组合件内的因特网协议低噪声块下变频器(IP LNB)组件可操作以确定卫星天线组件的一个或多个基准设置。 IP LNB组件可以周期地或不定期地监视可能对应于所确定的一个或多个基线设置的一个或多个当前设置,以识别一个或多个当前设置与基线设置的偏差。 监测的结果可以传送给卫星服务提供商。 卫星服务提供商可以根据所传送的监视结果为卫星天线组件提供维护和/或服务管理。 IP LNB组件可以经由GNSS模块确定位置设置,并通过IP LNB组件中的定向传感器确定对准设置。 IP LNB组件可以基于RSSI来确定接收到的信号强度。
Abstract:
A satellite reception assembly may comprise a first module operable to demodulate a first one or more channels of a signal output by a direct broadcast satellite (DBS) low noise block downconverter (LNB). The first module may output a signal to a second module which may demodulate a second one or more channels of the signal output by the DBS LNB. The second module may be installed after the satellite reception assembly has been deployed upon a number of clients served by the satellite reception assembly reaching a threshold.
Abstract:
Sistema aéreo de transmisión de vídeo e imágenes vía satélite en tiempo real, compuesto por dos partes principales; La parte embarcada (30) que posee sensores (1) y (2) de captación de vídeo e imágenes, un switch electrónico (3), varios codificadores (4), (5) y (6), un mini PC (10), una unidad de almacenamiento digital (9), un SAI (8), una batería (7) y un sistema de transmisión por satélite. La parte receptora (31), compuesta por un PC (17) con conexión a Internet (15) pudiendo estar situado en cualquier parte del mundo donde se recibirán los datos transmitidos de los sensores (1) y (2) situados en la parte embarcada (30). Teniendo especial aplicación en el sector aeronáutico donde debido a las circunstancias, sea necesario disponer de un sistema aéreo de transmisión de vídeo e imágenes vía satélite en tiempo real, sin limitación de cobertura y conectividad permanente como por ejemplo; en prevención y extinción de incendios, labores de vigilancia de fronteras, etc.
Abstract:
A system and a method for transmitting and receiving audiovisual media are provided. The system provides a network for transmitting audiovisual media and dynamic elements to a multimedia node which is connected to an electronic device, such as, for example, a portable electronic device. The audiovisual media is streaming audiovisual media, dynamic audiovisual media, interactive audiovisual media and/or dynamic and interactive audiovisual media scenes. Further, the network and the multimedia node transfer and receive dynamic elements and audiovisual media. The multimedia node transmits dynamic elements to the network which transmits the audiovisual media based on the dynamic elements received by the network. The multimedia node outputs a multimedia scene which incorporates the dynamic elements and the audiovisual media. Multiple users may access the network, the audiovisual media and/or the dynamic elements.
Abstract:
A receiving unit 28 includes a tuner that receives a first signal that may include a satellite signal. A demodulator demodulates the satellite signal to form a second signal. The second signal may be internet protocol (IP) encapsulated to form an IP encapsulated signal. The IP encapsulated signal may be communicated through an IP network to a decoder. The decoder 144 decodes the second signal or the IP encapsulated signal. A modulator 146 modulates the decoded signal which is communicated to user devices through a network 147. In addition, IP encapsulated signals may also be communicated to various user devices through the network.