Non-deterministic pilot symbol scheme

US2016197752A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016197752-A1
Application numberUS-201414909492-A
CountryUS
Kind codeA1
Filing dateAug 14, 2014
Priority dateAug 22, 2013
Publication dateJul 7, 2016
Grant date

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Abstract

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Embodiments relate to a transmitter ( 71 ) for transmitting a signal comprising data symbols and non-deterministic pilot symbols. The transmitter includes a mapper ( 712 ) operable to map one or more non-deterministic bits (u) to a non-deterministic pilot symbol having a pilot symbol phase in a predetermined pilot symbol phase range; and a pilot symbol inserter ( 115 ) operable to insert the pilot symbol into a stream of data symbols. Further, embodiments also relate to a corresponding receiver ( 73 ) for receiving a stream of data and pilot symbols. The receiver includes a phase estimator ( 737 ) operable to estimate a phase of a transmission channel based on a comparison of a received symbol corresponding to a pilot symbol position with a hypothetical pilot symbol, the hypothetical pilot symbol corresponding to one or more hypothetical non-deterministic bits (u) and having a pilot symbol phase in a predetermined pilot symbol phase range.

First claim

Opening claim text (preview).

1 . A transmitter ( 71 ) for transmitting a signal comprising data symbols and non-deterministic pilot symbols, the transmitter comprising: a mapper ( 712 ) operable to map one or more non-deterministic bits (u) to a non-deterministic pilot symbol corresponding to the one or more non-predetermined bits and to one or more predetermined bits and having a pilot symbol phase in a predetermined pilot symbol phase range smaller than a data symbol phase range of a digital modulation scheme used for the data symbols; and a pilot symbol inserter ( 115 ) operable to insert the pilot symbol into a stream of data symbols. 2 . The transmitter ( 71 ) of claim 1 , wherein the predetermined pilot symbol phase range covers only a subset of all possible data symbol phase values of a digital modulation scheme used for the data symbols. 3 . The transmitter ( 71 ) of claim 1 , wherein the predetermined pilot symbol phase range extends in one or two quadrants of a constellation diagram representing a digital modulation scheme used for the data symbols. 4 . The transmitter ( 71 ) of claim 1 , wherein the predetermined pilot symbol phase range corresponds to a range having a predetermined maximum angular offset from a predetermined axis through a constellation diagram of a digital modulation scheme used for the data symbols. 5 . The transmitter ( 71 ) of claim 4 , wherein the predetermined axis is a bisecting line of a quadrant of the constellation diagram. 6 . The transmitter ( 71 ) of claim 5 , wherein the maximum angular offset is in the range from 0° to ±45°, in particular in the range from 0° to ±30°. 7 . The transmitter ( 71 ) of claim 1 , wherein the transmitter ( 71 ) is operable to modulate the data symbols and/or the non-deterministic pilot symbols according to at least a quaternary Quadrature Amplitude Modulation (QAM) or a quaternary Phase Shift Keying (PSK) scheme. 8 . The transmitter ( 71 ) of claim 1 , further comprising a Forward Error Correction (FEC) encoder ( 111 ) operable to generate the one or more non-predetermined bits (u) as redundant bits based on one or more information bits and an FEC encoding rule. 9 . The transmitter ( 71 ) of claim 1 , wherein the data symbols correspond to a first information data stream and wherein the one or more non-predetermined bits (u) of the non-deterministic pilot symbol correspond to a second information data stream having a lower data rate than the first information data stream. 10 . The transmitter ( 71 ) of claim 9 , wherein second information data stream comprises control information. 11 . A method for transmitting a signal comprising data symbols and non-deterministic pilot symbols, the method comprising: mapping one or more non-deterministic bits (u) to a non-deterministic pilot symbol, the non-deterministic pilot symbol corresponding to the one or more non-predetermined bits and to one or more predetermined bits and having a pilot symbol phase in a predetermined pilot symbol phase range being smaller than a data symbol phase range of a digital modulation scheme used for the data symbols; and inserting the pilot symbol into a stream of data symbols. 12 . A receiver ( 73 ) for receiving a stream of data and pilot symbols, the receiver comprising: a phase estimator ( 737 ) operable to estimate a phase of a transmission channel based on a comparison of a received symbol corresponding to a pilot symbol position with a hypothetical pilot symbol, the hypothetical pilot symbol corresponding to one or more hypothetical non-deterministic bits (u) and to one or more predetermined bits and having a pilot symbol phase in a predetermined pilot symbol phase range smaller than a data symbol phase range of a digital modulation scheme used for the data symbols. 13 . The receiver ( 73 ) of claim 12 , wherein the phase estimator ( 737 ) is further operable to perform an additional blind phase estimation prior to or after estimating the phase of the transmission channel. 14 . The receiver ( 73 ) of claim 12 , wherein the receiver ( 73 ) is further operable to detect the one or more non-predetermined bits (u) based on a result of the comparison. 15 . A method for receiving a stream of data and pilot symbols, the method comprising: estimating a phase of a transmission channel based on a comparison of a received symbol corresponding to a pilot symbol position with a hypothetical pilot symbol, the hypothetical pilot symbol corresponding to one or more hypothetical non-deterministic bits (u) and to one or more predetermined bits and having a pilot symbol phase in a predetermined pilot symbol phase range smaller than a data symbol phase range of a digital modulation scheme used for the data symbols.

Assignees

Inventors

Classifications

  • using blind estimation · CPC title

  • in order to facilitate carrier recovery at the receiver end, e.g. by transmitting a pilot or by using additional signal points to allow the detection of rotations · CPC title

  • Allocation of pilot signals, i.e. of signals known to the receiver (allocation of control signalling H04L5/0053; use of control signalling H04L5/0091) · CPC title

  • using a modulation of the constellation points · CPC title

  • with more than one phase shift per symbol period · CPC title

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What does patent US2016197752A1 cover?
Embodiments relate to a transmitter ( 71 ) for transmitting a signal comprising data symbols and non-deterministic pilot symbols. The transmitter includes a mapper ( 712 ) operable to map one or more non-deterministic bits (u) to a non-deterministic pilot symbol having a pilot symbol phase in a predetermined pilot symbol phase range; and a pilot symbol inserter ( 115 ) operable to insert the pi…
Who is the assignee on this patent?
Alcatel Lucent
What technology area does this patent fall under?
Primary CPC classification H04L27/2085. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jul 07 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).