The present invention relates to an apparatus and method for broadcasting radio frequency signals, and more specifically, to a hybrid time-divisional multiplexing modulation schema.
A wireless system, such as a digital video broadcasting system, may transmit data in the form of a sequence of frames arranged in a frame structure. For example, a digital video broadcasting system can utilize any of a Digital Video Broadcasting (DVB) standard, an Advanced Televisions Systems Committee (ATSC) standard, an Integrated Services Digital Broadcasting (ISDB) standard, or Digital Multimedia Broadcasting (DMB) standard. Each frame typically includes a preamble section and a data section. The preamble section and the data section are time-multiplexed.
In accordance with one aspect of the present invention, a method is provided for generating a hybrid signal. Digital video is broadcast in a first set of at least one time slot of a plurality of time slots comprising the hybrid signal. Mobile data, formatted for reception at a mobile device, is broadcast in a second set of at least one time slot of the plurality of time slots comprising the hybrid signal. Structured data is broadcast in a transition band between the first set of at least one time slot and the second set of at least one time slot.
In accordance with another aspect of the present invention, a hybrid modulator system is provided. A digital video source is configured to provide digital video according to a desired video standard. A mobile data source is configured to provide data formatted for reception at a mobile device. A structured data source is configured to provide structured data. A multiplexer is configured to combine the digital video, the data formatted for reception at the mobile device, and the structured data as a hybrid signal in a time-multiplexed arrangement. In the hybrid signal, the digital video occupies a first set of at least one time slot of a plurality of time slots comprising the hybrid signal; the data formatted for reception at the mobile device occupies a second set of at least one time slot of the plurality of time slots comprising the hybrid signal, and the structured data occupies a transition band between the first set of at least one time slot and the second set of at least one time slot.
In an embodiment of the present invention, a hybrid modulator system is provided. A digital video source is configured to provide digital video formatted according to the Digital Video Broadcasting (DVB) standard. A mobile data source is configured to provide mobile data formatted according to the Long Term Evolution (LTE) standard. A structured data source is configured to provide structured data. A multiplexer is configured to insert the mobile data into a future extension frame associated with the DVB standard and to insert the structured data in a sync buffer time associated with the future extension frame.
For a better understanding of the invention, reference may be made to the accompanying drawings, in which:
In accordance with an aspect of the present invention, the hybrid modulator system 16 further includes a structured data source that provides structured data for addition to the hybrid signal, for example, in a transition band between the digital video and the mobile data. In one implementation, the structured data source 16 can provide a digital stream of structured data selected to improve at least one signal metric associated with the hybrid signal, such as a peak-to-average ratio. For example, the structured data can include a waveform selected to allow a smooth transition between a first waveform representing the digital video and a second waveform representing the data formatted for reception at a mobile device, band-limited noise having an amplitude limit selected to prevent output power fluctuation, or a signal modulated with only a repeated binary value. In another implementation, the structured data is a signal modulated to carry data other than that of the digital video and the mobile data.
A multiplexer 18 combines the digital video, the mobile data, and the structured data into a hybrid signal. Specifically, the multiplexer 18 is configured to combine the digital video, the data formatted for reception at the mobile device, and the structured data as a hybrid signal in a time-multiplexed arrangement. In this arrangement, the digital video occupies a first set of at least one time slot of a plurality of time slots comprising the hybrid signal; the data formatted for reception at the mobile device occupies a second set of at least one time slot of the plurality of time slots comprising the hybrid signal, and the structured data occupies a transition band between the first set of at least one time slot and the second set of at least one time slot.
In one implementation, the system can be applied in a tower overlay arrangement to provide mobile data in combination with terrestrial broadcasting. Some terrestrial broadcasting standards provide frame structures with slots for carrying video, as well additional slots for other data. For example, the DVB Terrestrial 2nd generation (DVB-T2) standard for terrestrial standard broadcasting has a super frame structure consisting of a number of frames. A slot, included in the super frame or each frame, does not transmit a DVB-T2 signal. The super frame is referred to as a Future Extension Frame (FEF), and, FEF slots may be provided in addition to the parts of the frame structure which transmit video signals intended for reception by conventional DVB receivers. These additional physical slots, such as the FEF slots, can be used for the transmission of signals, such as, for example, signals intended for reception by handheld receivers. The standard includes a period in which no signal is transmitted, referred to as a “sync buffer time” or “black spot” between the video data and the mobile data.
In the illustrated system, the structured data source 16 can be used to fill the sync buffer time with structured data selected to improve signal properties, such as band-limited noise, modulated zero values, or a waveform selected to smooth the transition between the video data and the mobile data. In another implementation, the sync buffer time could be provide a tertiary transmission, such as data supplementing the video or mobile data, audio, or another signal suitable for transmission within the sync buffer time window.
The data from each of the DVB-T2 modulator 54, the LTE/P2MP modulator 56, and the structured data source 58 are provided to a multiplexer 60 to combine the data into a single digital signal compliant with the DVB-T2 standard.
In another implementation, the sync buffer time can be split to occupy two non-contiguous locations in the future extension frame.
In view of the foregoing structural and functional features described above, a method in accordance with various aspects of the present invention will be better appreciated with reference to
At 156, structured data is broadcast in a transition band between the first set of at least one time slot and the second set of at least one time slot. For example, the structured data can be broadcast in a sync buffer time associated with the future extension frame of the DVB-T2 standard. In one implementation, the structured data is selected to improve a quality metric of the hybrid signal. For example, the structured data can include a waveform selected to allow a smooth transition between a first waveform representing the digital video and a second waveform representing the data formatted for reception at a mobile device, such as a cross-fade between the first waveform and the second waveform. Alternatively, the structured data can include band-limited noise having an amplitude limit selected to prevent output power fluctuation or a signal modulated to carry only a repeated binary value. Alternatively, the structured data can include a signal modulated to carry data from a data source other than the digital video and the data formatted for reception at a mobile device.
In one implementation, the structured data can be included not only in the transition between the digital video and the mobile data, but also in the transition from the mobile data to the digital video. In such an implementation, digital video can be broadcast in a third set of at least one time slot, such as the video data in a new frame, and the structured data can be broadcast in a transition band between the second set of at least one time slot and the third set of at least one time slot. In the example of a DVB-T2/LTE-A hybrid signal, the sync buffer time associated with the future extension frame can be split into a first sync buffer time, located near a beginning of the future extension frame, and a second sync buffer time, located near an end of the future extension frame, with the structured data broadcast in each of the first and second sync buffer times.
What have been described above are examples of the present invention. It is, of course, not possible to describe every conceivable combination of components or methodologies for purposes of describing the present invention, but one of ordinary skill in the art will recognize that many further combinations and permutations of the present invention are possible. Accordingly, the present invention is intended to embrace all such alterations, modifications, and variations that fall within the scope of the appended claims.
This application claims the benefit of the earlier filing date of U.S. Provisional Patent Application No. 62/039,293 filed Aug. 19, 2014. The disclosure in the aforementioned U.S. Provisional Patent Application No. 62/039,293 is hereby incorporated herein in its entirety by this reference thereto.
Number | Date | Country | |
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62039293 | Aug 2014 | US |