OPTIMAL MIMO ISI CHANNEL ESTIMATION USING LOOSELY SYNCHRONIZED CODES AND THEIR VARIATIONS
A training-based channel estimation technique is provided to estimate channel state information for MIMO systems that is highly energy efficient and optimal in terms of Cramér-Rao lower bound (CRLB). The technique employs loosely synchronized (LS) codes or shifted LS codes. The codes can be generated using a fast Golay correlator and an efficient Golay correlator. A low-complexity implementation is also provided.
1 . A method in a multiple-input multiple-output (MIMO)-based wireless network, the method comprising:
receiving a training signal from a MIMO-based wireless network, the training signal comprising a set of at least one of loosely synchronized (LS) codes or shifted LS codes; and
estimating channel state information (CSI) for at least one channel based at least in part on the training sequence.
2 . The method of claim 1 wherein the receiving comprises receiving a training signal comprising a set of LS codes.
3 . The method of claim 1 wherein the receiving comprises receiving a training signal comprising a set of shifted LS codes.
4 . The method of claim 1 wherein the estimating of the CSI comprises employing a Golay correlator optimized for speed.
5 . The method of claim 1 wherein the estimating of the CSI comprises employing an Golay correlator optimized for efficiency.
6 . The method of claim 1 wherein the receiving comprises receiving a training signal from a wireless network that is at least one of a cellular-based network or a wireless LAN.
7 . The method of claim 1 wherein the receiving comprises receiving a training signal from a MIMO intersymbol interference (ISI) network.
8 . A computer-readable medium containing instructions that when executed performs the method of:
determining a training sequence of at least one of loosely synchronized (LS) codes or shifted LS codes;
transmitting the training sequence over a multiple-input multiple-output (MIMO) wireless network; and
receiving an indication of a precoder scheme from a remote MIMO device, the precoder scheme based on estimated channel state information (CSI) determined by the training sequences.
9 . The computer-readable medium of claim 8 wherein the determining of a training sequence of at least one of loosely synchronized (LS) codes or shifted LS codes includes determining LS codes.
10 . The computer-readable medium of claim 8 wherein the determining wherein the determining of a training sequence of at least one of loosely synchronized (LS) codes or shifted LS codes includes determining shifted LS codes.
11 . The computer-readable medium of claim 8 wherein the receiving of an indication of a precoder scheme from a remote MIMO device comprises receiving an indication of a precoder scheme from at least one of an access point or a base station.
12 . The computer-readable medium of claim 8 wherein the transmitting of the training sequence over a MIMO wireless network comprises transmitting the training sequence over a MIMO intersymbol interference (ISI) network.
13 . The computer-readable medium of claim 8 wherein the transmitting of the training sequence over a MIMO wireless network comprises transmitting the training sequence over at least one of a MIMO wireless LAN or cellular network.
14 . The computer-readable medium of claim 8 wherein the transmitting of the training sequence over a MIMO wireless network comprises transmitting a frame comprising a preamble and a postamble.
15 . The computer-readable medium of claim 8 wherein the determining a training sequence of at least one of loosely synchronized (LS) codes or shifted LS codes comprises employing at least one of fast Golay correlator or an efficient Golay correlator.
16 . A apparatus used in a multiple-input, multiple-output (MIMO) network comprising:
a memory;
a plurality of antennas;
a channel estimation component that receives a training signal from at least some of the plurality of antennas comprising at least one of loosely synchronized (LS) codes or shifted loosely synchronized codes and estimates the channel state information (CSI) based at least in part on the training signal.
17 . The apparatus of claim 16 further comprising an efficient Golay correlator component that performs efficient Golay correlation while facilitating the channel estimation component in estimating the CSI.
18 . The apparatus of claim 16 further comprising a fast Golay component that performs efficient Golay correlation while facilitating the channel estimation component in estimating the CSI.
19 . The apparatus of claim 16 further comprising a precoder component that uses the estimated CSI to determine a precoding scheme.
20 . The apparatus of claim 16 wherein the apparatus is at least one of a mobile phone, a laptop, or a wireless network interface card.