The invention relates to the field of networks. More specifically, embodiments of the invention relate to a system and method for enabling different types of information, such as audio, video and/or data for example, to be simultaneously transported over a power line between nodes.
Over the last few years, there has been a growing demand for home networking. In fact, efforts have been made to develop a high-speed home network using the medium of alternating cur-rent (AC) power line wiring. Recently, the HomePlug Powerline Alliance developed a specification that defines the functions, operations and interface characteristics for nodes to communicate over AC power lines. However, this specification, referred to as the “HomePlug 1.0 Specification” dated Jun. 30, 2001, merely addresses the transport of data and does not address the transport of audio (voice) and video possibly simultaneously over these power lines.
The features and advantages of certain embodiments of the invention will become apparent from the following detailed description of the invention in which:
Herein, an exemplary embodiment of the invention relates to a system and method for enabling different types of information to be simultaneously or concurrently transported over power line between nodes. The embodiment described herein is not exclusive; rather, it merely provides a thorough understanding of the invention. Also, well-known circuits and logical interconnections are not set forth in detail in order to avoid unnecessarily obscuring the invention.
In the following description, certain terminology is used to describe features of the invention. For example, a “node” is any equipment that transports information over a power line. Such transport may be in accordance with current or future specifications such as the HomePlug 1.0 Specification published on or around Jun. 30, 2001. Examples of different types of “nodes” include an adapter or a centralized access point (e.g., a gateway or bridge). Each node may be configured to transport multiple types of information simultaneously or concurrently over a power line such as voice and/or data and/or video. A “power line” is generally defined as a medium normally carrying nominal alternating current (AC) voltages. These voltages may range from approximately 120 volts (V) to 240V.
The term “voice” includes audible speech as well as any other type of audio. The term “frame” generally refers to a particular grouping of bits of information for transport. Normally, a frame is formed with a series of packets, which are smaller sized grouping of bits.
Referring to
An adapter 110X (where X≧1) includes a two or three-prong plug that can be inserted into an AC wall outlet. This coupled adapter 110X to the power line 130. Although not shown, an adapter 110X may include a processing unit, memory and an input/output (I/O) interface that enables communication with the peripheral devices 140-140M. The I/O interface may be any type of connector (e.g., RJ-11 jack(s), serial, parallel, Universal Serial Bus “USB”, etc.) or even a wireless transceiver.
For clarity, a logical representation of each adapter (e.g., adapter 1101) is shown in
The MAC layer 210 is generally responsible for the segmentation, reassembly and transport of frames (e.g., frames in accordance with the HomePlug 1.0 specification or perhaps subsequent specifications, which are referred to as “Homeplug frames”) to higher level layers of the adapter 1101. The Interface block 220 is generally responsible for identifying the type of information content contained in an incoming frame received over the powerline 130 and to control the data clarification block 230 to route the incoming frame or information associated with the incoming frame to appropriate processing logic 240. Hence, voice, video and data may be processed at the adapter 1101.
More specifically, if information content of the frame is voice or call processing data (e.g., On/Off Hook or other phone control data), a packetized voice/call processing engine 250 processes such information so that the telephone 1401 operates as a normal Land line telephone. In the event that the transport information is data, it is routed to a computer 1402 as an Ethernet frame produced by Ethernet Driver/Port 260. If the transport information is video, a video processing unit 270 of the adapter 1101 processes the incoming video and outputs the video over a video input/output (I/O) 280 to peripheral devices 1403-140M.
As shown, the CAP 120 comprises a gateway bridge 121 and an existing gateway 122. The gateway bridge 121 provides a voice/call processing capability and enables communications with the powerline 130 without modification of the existing gateway 122. The gateway bridge 121 interconnects the plurality of adapters 1101-110N to the gateway 122, which is in communication with a separate network such as a wide area network (WAN) 123 (e.g., Internet) or a local area network (LAN). Herein, only voice data is processed by the gateway bridge 121.
More specifically, with respect to the logical representation of the CAP 120 for this embodiment, the Interface block 281 identifies whether the information contained in the HomePlug frame propagated over the power line 130 comprises voice, data or video by analyzing a packet type field of the HomePlug frame as described below. If the Interface block 281 determines that the information is voice data, such data is routed as analog signals over multiple channel paths (V1-V4) into the gateway 122. A packetized voice/call processing engine 285 configures these signals for routing through a phone line driver foreign exchange office (FXO) 286, a phone line driver foreign exchange station (FXS) 287 and into a second processing engine 290 for packetization of the data and placement on the WAN (or LAN). Meanwhile, if the Interface block 281 determines that the information is data and/or video, such information is recovered from an incoming HomePlug frame and encapsulated into an Ethernet frame transmitted over an Ethernet port 288 of the gateway bridge 121 to an Ethernet port 289 of the gateway 122. Quality of Service (QoS) is performed at the adapter 110X, gateway bridge 121 and gateway 122 to guarantee high quality delivery of voice and video.
Referring now to
For both of these illustrative embodiments of networks incorporating the invention, it is evident that the functional aspects and packetization may be implemented in hardware or software, the later being stored in a processor readable medium. The “processor readable medium” may include any medium that can store or transfer information. Examples of the processor readable medium include an electronic circuit, a semiconductor memory device, a read only memory (ROM), a flash memory, an erasable programmable ROM (EPROM), a fiber optic medium, a radio frequency (RF) link, and any platform readable media such as a floppy diskette, a CD-ROM, an optical disk, a hard disk, etc.
Referring now to
The AAL2 format for voice payload is well defined with small overhead. The packet size can fit into the frame body 430 of the HomePlug frame 420 without the need of segmentation. AAL2 is a single layer protocol; therefore, it would be easy to implement. By using a standardized format, as here, it allows interoperability. In addition, if the payload is already packetized, when the packet to a WAN through the CAP (e.g., gateway) directly based on the same compression algorithm, it does not require a translator to re-packetize. This even simplifies the implementation.
Referring to
Referring now to
Referring to
Referring still to
While certain exemplary embodiments have been described and shown in the accompanying drawings, it is to be understood that such embodiments are merely illustrative of and not restrictive on the broad invention, and that this invention not be limited to the specific constructions and arrangements shown and described, since various other modifications may occur that fall within the scope of the invention. For example, it may be possible to implement the invention or some of its features in hardware, firmware, software or a combination thereof where the software is provided in a processor readable medium as set forth above.
This application claims the benefit of priority on U.S. Provisional Application No. 60/316,148, filed Aug. 30, 2001.
| Number | Name | Date | Kind |
|---|---|---|---|
| 6577630 | Markwalter et al. | Jun 2003 | B1 |
| 6742027 | Cromer et al. | May 2004 | B1 |
| 6891887 | Dobson | May 2005 | B1 |
| 6907013 | Ruziak | Jun 2005 | B1 |
| 6907044 | Yonge et al. | Jun 2005 | B1 |
| 6934752 | Gubbi | Aug 2005 | B1 |
| 6987770 | Yonge, III | Jan 2006 | B1 |
| 7054316 | Cheng et al. | May 2006 | B2 |
| 7095754 | Benveniste | Aug 2006 | B2 |
| 20020163933 | Benveniste | Nov 2002 | A1 |
| 20040037311 | Willes et al. | Feb 2004 | A1 |
| 20040037317 | Zalitzky et al. | Feb 2004 | A1 |
| 20040075535 | Propp et al. | Apr 2004 | A1 |
| 20040174851 | Zalitzky et al. | Sep 2004 | A1 |
| 20060248208 | Walbeck et al. | Nov 2006 | A1 |
| 20070097960 | Kurobe et al. | May 2007 | A1 |
| 20070198748 | Ametsitsi et al. | Aug 2007 | A1 |
| 20070280201 | Berkman | Dec 2007 | A1 |
| Number | Date | Country | |
|---|---|---|---|
| 20030088706 A1 | May 2003 | US |
| Number | Date | Country | |
|---|---|---|---|
| 60316148 | Aug 2001 | US |