IP Library Patent Application 11887109
Patent Application
App. No. 11/887,109

Method for improving the performance of ofdm receiver and a receiver using the method

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Quick Facts
Patent No.
US None
App. No.
11/887,109
Abstract

One or more parameters of a tuner of a receiver may be adjusted by generating for the receiver one or more control signals associated with one or more parameters and applying control signals to the tuner during a cyclic prefix (CP) period. The receiver may generate a control strobe in synchronization with the CP period wherein the control strobe essentially begins with the CP period and has duration preferably shorter than the duration of the CP period. The duration of the control strobe may be chosen such that the one or more control signals, after being applied to the tuner, each reaches its steady state before the CP period lapses. The adjusted parameters, alone or in combination, may be, for example, the gain of the low-noise-amplifier (LNA), the synthesizer's local frequency, the DC correction level, the power gain amplifier, and the I/Q error, and the like. The demodulator of the receiver may generate one or more of the control signals required for adjusting one or more parameters. One or more control signals may be determined according to previously received symbols/transmissions, and by determining the tuner's parameters to be adjusted based on the receiver's continued performance evaluations, and generating and applying the control signals to the tuner as a consequence of or in relation to these evaluations.

Claims (38)

1 . A method of adjusting one or more parameters of a receiver, comprising:

a) generating one or more control signals associated with said one or more parameters; and

b) applying said one or more control signals to said receiver during a cyclic prefix period to adjust said one or more parameters.

2 . The method according to claim 1 , wherein the receiver generates control strobes in synchronization with respective cyclic prefix periods wherein each of said control strobes essentially begins with the respective cyclic prefix and has a duration shorter than the duration of said cyclic prefix period.

3 . The method according to claim 2 , wherein the duration of the control strobe is chosen such that substantially each one of the one or more parameters, after applying corresponding control signals, reaches its steady state before the cyclic prefix period lapses.

4 . The method according to claim 1 , wherein the parameters are selected from a group of parameters consisting of {The gain of the low-noise-amplifier G LNA ; The synthesizer's local frequency F LO ; The DC correction level L DC ; The power amplifier gain G PGA ; I/Q error, The mixer's gain G MIX }.

5 . The method according to claim 1 , wherein one or more control signals are generated by the demodulator of the receiver.

6 . The method according to claim 1 , wherein one or more control signals are generated externally to the receiver.

7 . The method according to claim 1 , wherein one or more control signals are determined according to previously received extended symbols.

8 . The method according to claim 1 , wherein one or more of the control signals is determined according to a currently received extended symbol.

9 . The method according to claim 1 , wherein a control signal is applied to the receiver during each control strobe.

10 . The method according to claim 1 , wherein a control signal is applied to the receiver after receiving a predetermined number of extended symbols and during a corresponding control strobe.

11 . The method according to claim 1 , wherein a control signal is applied to the receiver whenever required and during a corresponding control strobe.

12 . A wireless receiving system, comprising:

a wireless receiver adapted to receive a stream of extended symbols; and

a controller adapted to monitor and evaluate the performance of said wireless receiver, generate control strobes in synchronization with respective cyclic prefixes contained within a received stream of extended symbols, and to generate and apply to said receiver one or more control signals during a control strobe for adjusting one or more parameters of said receiver,

wherein each of said control strobes essentially begins with the respective cyclic prefix and has a duration shorter than the duration of said cyclic prefix period.

13 . The receiving system according to claim 12 , wherein the duration of the control strobe is chosen such that substantially each one of the one or more parameters, after applying corresponding control signals, reaches its steady state before the cyclic prefix period lapses.

14 . The receiving system according to claim 12 , wherein the parameters are selected from a group of parameters consisting of {The gain G LNA of the low-noise-amplifier; The synthesizer's local frequency F LO ; The DC correction level L DC ; The power gain amplifier G PGA ; I/Q error, The gain of the mixer G MIX }.

15 . The receiving system according to claim 12 , wherein one or more control signals are generated by a demodulator of the receiver.

16 . The receiving system according to claim 12 , wherein one or more control signals are generated externally to the receiver.

17 . The receiving system according to claim 12 , wherein one or more control signals are determined according to previously received extended symbols.

18 . The receiving system according to claim 12 , wherein one or more of the control signals is determined according to a currently received extended symbol.

19 . The receiving system according to claim 12 , wherein a control signal is applied to the receiver during each control strobe.

20 . The receiving system according to claim 12 , wherein a control signal is applied to the receiver after receiving a predetermined number of extended symbols and during a corresponding control strobe.

21 . The receiving system according to claim 12 , wherein a control signal is applied to the receiver whenever required and during a corresponding control strobe.

22 . A wireless receiver, comprising:

a controller adapted to receive a stream of extended symbols, monitor and evaluate the performance of said receiver, generate control strobes in synchronization with respective cyclic prefixes contained within received extended symbols, and to generate and apply to said receiver one or more control signals during a control strobe for adjusting one or more parameters of said receiver,

wherein each of said control strobes essentially begins with the respective cyclic prefix and has a duration shorter than the duration of said cyclic prefix period.

23 . The receiver according to claim 22 , wherein the duration of the control strobe is chosen such that substantially each one of the one or more parameters, after applying corresponding control signals, reaches its steady state before the cyclic prefix period lapses.

24 . The receiver according to claim 22 , wherein the parameters are selected from a group of parameters consisting of {The gain G LNA of the low-noise-amplifier; The synthesizer's local frequency F LO ; The DC correction level L DC ; The power gain amplifier G PGA ; I/Q error, The gain of the mixer G MIX }.

25 . The receiver according to claim 22 , wherein one or more control signals are generated by a demodulator of the receiver.

26 . The receiver according to claim 22 , wherein one or more control signals are generated externally to the receiver.

27 . The receiver according to claim 22 , wherein one or more control signals are determined according to previously received extended symbols.

28 . The receiver according to claim 22 , wherein one or more of the control signals is determined according to a currently received extended symbol.

29 . The receiver according to claim 22 , wherein a control signal is applied to the receiver during each control strobe.

30 . The receiver according to claim 22 , wherein a control signal is applied to the receiver after receiving a predetermined number of extended symbols and during a corresponding control strobe.

31 . The receiver according to claim 22 , wherein a control signal is applied to the receiver whenever required and during a corresponding control strobe.

Assignments (6)
AMENDMENT TO LIEN AGREEMENT Recorded Nov 26, 2010
From: SIANO MOBILE SILICON LTD.
To: PLENUS II LIMITED PARTNERSHIP; PLENUS II (D.C.M.) LIMITED PARTNERSHIP; PLENUS III LIMITED PARTNERSHIP; PLENUS III (D.C.M.) LIMITED PARTNERSHIP; PLENUS III (2) LIMITED PARTNERSHIP; PLENUS III (C.I.) L.P.
Reel/Frame 025413/0501 →
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY DATA PREVIOUSLY REOCRDED ON REEL 024621 FRAME 0265. ASSIGNOR(S) HEREBY CONFIRM THE LIEN. Recorded Aug 18, 2010
From: SIANO MOBILE SILICON LTD.
To: PLENUS II, LIMITED PARTNERSHIP; PLENUS II (D.C.M.) LIMITED PARTNERSHIP; PLENUS III, LIMITED PARTNERSHIP; PLENUS III (D.C.M.) LIMITED PARTNERSHIP; PLENUS III (2) LIMITED PARTNERSHIP
Reel/Frame 024952/0900 →
LIEN Recorded Jul 1, 2010
From: SIANO MOBILE SILICON LTD.
To: PLENUS MANAGEMENT (2004) LTD.; PLENUS MANAGEMENT III 2007 LTD.
Reel/Frame 024621/0265 →
RELEASE OF SECURITY INTEREST Recorded Jun 30, 2010
From: KREOS CAPITAL II LIMITED
To: SIANO MOBILE SILICON LTD.
Reel/Frame 024614/0453 →
AMENDMENT TO U.S. INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 15, 2009
From: SIANO MOBILE SILICON LTD.
To: KREOS CAPITAL II LIMITED
Reel/Frame 022959/0070 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2008
From: OREN, ROY
To: SIANO MOBILE SILICON LTD.
Reel/Frame 020391/0432 →