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Resource Unit (RU) is a unit in
OFDMA Orthogonal frequency-division multiple access (OFDMA) is a multi-user version of the popular orthogonal frequency-division multiplexing (OFDM) digital modulation scheme. Multiple access is achieved in OFDMA by assigning subsets of subcarrier ...
terminology used in 802.11ax
WLAN A wireless LAN (WLAN) is a wireless computer network that links two or more devices using wireless communication to form a local area network (LAN) within a limited area such as a home, school, computer laboratory, campus, or office building ...
to denote a group of 78.125 kHz bandwidth subcarriers (tones) used in both
DownLink In a telecommunications network, a link is a communication channel that connects two or more devices for the purpose of data transmission. The link may be a dedicated physical link or a virtual circuit that uses one or more physical links or shar ...
(DL) and
UpLink In a telecommunications network, a link is a communication channel that connects two or more devices for the purpose of data transmission. The link may be a dedicated physical link or a virtual circuit that uses one or more physical links or shar ...
(UL) transmissions. With OFDMA, different transmit powers may be applied to different RUs. There are maximum of 9 RUs for 20  MHz bandwidth, 18 in case of 40 MHz and more in case of 80 or 160 MHz bandwidth. The RUs enables an Access Point station to allow WLAN stations to access it simultaneously and efficiently.


Description

In the older WLAN standard (802.11ac) only single-user station is allowed to transmit ( uplink transmission) at one point in time, although multi-user downlink (DL-MU-MIMO) from AP to Non-AP stations has been supported through
MIMO In radio, multiple-input and multiple-output, or MIMO (), is a method for multiplying the capacity of a radio link using multiple transmission and receiving antennas to exploit multipath propagation. MIMO has become an essential element of w ...
beamforming. The more stations active in the network, the longer the stations need to wait before allowed to transmit, hence the overall wireless traffic gets slower. 802.11ax WLAN is the first WLAN standard to use OFDMA to enable transmissions with multiple users simultaneously (it is called ''High Efficiency Multi Users
E-MU E-mu Systems was a software synthesizer, audio interface, MIDI interface, and MIDI keyboard manufacturer. Founded in 1971 as a synthesizer maker, E-mu was a pioneer in samplers, sample-based drum machines and low-cost digital sampling musi ...
Access)''. In OFDMA, a
symbol A symbol is a mark, sign, or word that indicates, signifies, or is understood as representing an idea, object, or relationship. Symbols allow people to go beyond what is known or seen by creating linkages between otherwise very different conc ...
is constructed of subcarriers where the total number defines a Physical Layer PDU bandwidth. Each user is assigned different subsets of subcarriers to achieve simultaneous data transmission in MU (Multi-Users) environment. The more subcarriers are used, the longer their symbol rate is, which means that the overall rate of information remains the same. For example, in 20 MHz OFDMA bandwidth there is a total of 256 subcarriers (tones) which are grouped in sub-channels (or ''Resource Units).'' There are three subcarrier types used in OFDMA WLAN: # Data subcarrier; used for actual data transmission # Pilot subcarrier; used for phase information and parameter tracking # Unused subcarrier which is neither data nor pilot subcarrier. This includes DC, Guard band and null subcarriers. There are a few RUs currently defined: 26-tone RU, 52-tone RU, 106-tone RU, 242-tone RU ('' primary channel''), 484-tone RU, 996-tone RU and 2x996-tone RU. For example, for basic 20 MHz bandwidth, nine 26-tone RUs can be used, but only four with 52-tone RUs. For example, when an AP supports 52-tone RUs for its 20-MHz bandwidth, four users can transmit and/or receive simultaneously to the AP (each uses 52-tones, but the total bandwidth for all users must be less than or equal the whole 20-MHz full allocated bandwidth). This scheme increases efficiency, compared to older method (802.11ac) where only a single user can transmit ('' uplink transmission'') at a time (it uses the whole allocated 20 MHz bandwidth), while the rest must wait their turn. When there is only one user in the network, if necessary it can still use the whole 20-MHz bandwidth by operating at 242-tone RU to reach higher data rate. A 52-Tone RU consists of 48 data subcarriers and 4 pilot subcarriers. 106-tone RU consists of 102 data subcarriers and 4 pilot subcarriers, while A 242-tone RU consists of 234 data subcarriers and 8 pilot subcarriers. A 484-tone RU consists of 468 data subcarriers and 16 pilot subcarriers, A 996-tone RU consists of 980 data subcarriers and 16 pilot subcarriers and A 2x996-tone RU consists of two 996-tone RUs, each located at each half of the PPDU bandwidth for 160 MHz and 80+80 MHz HE PPDU formats. For backward compatibility, when a 802.11ax-capable station communicates with non-802.11ax-capable station both stations can only use 242-Tone-RU (the entire primary channel). To achieve that, both
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and control frames must still be transmitted over standard OFDM subcarriers of the entire primary channel as well by both stations. Resource Units allocation is also used in
MIMO In radio, multiple-input and multiple-output, or MIMO (), is a method for multiplying the capacity of a radio link using multiple transmission and receiving antennas to exploit multipath propagation. MIMO has become an essential element of w ...
transmission to enable multiple users to use MIMO at the same time.


Uplink Transmission

A new mechanism for uplink transmission (UL) from multiple Non-AP stations simultaneously to AP station is introduced in 802.11ax which is called ''Triggered Uplink Access (TUA)''. This new mechanism relies on a new type of 802.11 MAC frame called Trigger Frame sent by AP station. An HE-enabled AP station first solicits a trigger frame to non-AP HE-enabled stations to initiate OFDMA or MU-MIMO transmissions before other non-AP stations start sending. This frame identifies non-AP stations participating in the UL MU transmissions and assigns RUs to these stations. Each non-AP station receiving the trigger frame sends its own HE TB (Trigger-Based) PPDU back to AP using the assigned RUs. They may send Null-Data frames if there is no actual data to send at the moment.


Downlink Transmission

AP station holds the RU allocation information for every peer Non-AP station associated with it, so it simply sends frames using downlink MU-MIMO (using multiple antennas with the signal beamformed to a specific station), DL OFDMA (RU allocations) technique or combination of the two techniques.


See also

*
Frequency-division multiple access Frequency-division multiple access (FDMA) is a channel access method used in some multiple-access protocols. FDMA allows multiple users to send data through a single communication channel, such as a coaxial cable or microwave beam, by dividi ...
* Single-carrier FDMA (SC-FDMA), a.k.a. linearly precoded OFDMA ( LP-OFDMA)


References


External links


IEEE 802.11 working group


{{cdma Computer-related introductions in 1997 Local area networks Wireless networking standards IEEE 802.11