WO2006028607A1 - Adaptive pre-emphasis filtering in a phase modulator - Google Patents
Adaptive pre-emphasis filtering in a phase modulator Download PDFInfo
- Publication number
- WO2006028607A1 WO2006028607A1 PCT/US2005/026707 US2005026707W WO2006028607A1 WO 2006028607 A1 WO2006028607 A1 WO 2006028607A1 US 2005026707 W US2005026707 W US 2005026707W WO 2006028607 A1 WO2006028607 A1 WO 2006028607A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- filter
- parameter
- predetermined
- filters
- phase modulation
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L25/00—Baseband systems
- H04L25/02—Details ; arrangements for supplying electrical power along data transmission lines
- H04L25/03—Shaping networks in transmitter or receiver, e.g. adaptive shaping networks
- H04L25/03828—Arrangements for spectral shaping; Arrangements for providing signals with specified spectral properties
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L27/00—Modulated-carrier systems
- H04L27/32—Carrier systems characterised by combinations of two or more of the types covered by groups H04L27/02, H04L27/10, H04L27/18 or H04L27/26
- H04L27/34—Amplitude- and phase-modulated carrier systems, e.g. quadrature-amplitude modulated carrier systems
- H04L27/36—Modulator circuits; Transmitter circuits
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L27/00—Modulated-carrier systems
- H04L27/32—Carrier systems characterised by combinations of two or more of the types covered by groups H04L27/02, H04L27/10, H04L27/18 or H04L27/26
- H04L27/34—Amplitude- and phase-modulated carrier systems, e.g. quadrature-amplitude modulated carrier systems
- H04L27/36—Modulator circuits; Transmitter circuits
- H04L27/366—Arrangements for compensating undesirable properties of the transmission path between the modulator and the demodulator
- H04L27/367—Arrangements for compensating undesirable properties of the transmission path between the modulator and the demodulator using predistortion
- H04L27/368—Arrangements for compensating undesirable properties of the transmission path between the modulator and the demodulator using predistortion adaptive predistortion
Definitions
- a signal is separated into its instantaneous amplitude and phase/frequency components (rather than into the classical in-phase (T) and quadrature (Q) components), and the amplitude component and phase/frequency component are modulated independently.
- the amplitude component may be modulated with any suitable amplitude modulation (AM) technique, while the phase/frequency component may be modulated using an analog phase locked loop (PLL).
- AM amplitude modulation
- PLL analog phase locked loop
- the bandwidth of the PLL may be quite small, much smaller than the actual bandwidth of the transmission signal's instantaneous phase/frequency.
- the loop filter may be narrow enough to attenuate the sigma-delta quantization noise and the phase noise of the PLL.
- a pre-emphasis filter may emphasize, prior to modulation, those frequency components that would be attenuated by the PLL.
- FIG. 1 is a block-diagram illustration of an exemplary communication system according to some embodiments of the invention.
- FIG. 2 is a block-diagram illustration of an exemplary phase path according to some embodiments of the invention.
- FIG. 3 is a flowchart illustration of a method to generate a filter according to some exemplary embodiments of the invention.
- the present invention may be used in a variety of applications. Although the present invention is not limited in this respect, the circuits and techniques disclosed herein may be used in many apparatuses such as, for examples modems, wireless local area network (WLAN) stations, receivers of a radio system or the like.
- Portable communication devices intended to be included within the scope of the present invention may include, by a way of example only, cellular radiotelephone portable communication devices, digital communication system portable devices and the like.
- Types of cellular radiotelephone systems intended to be within the scope of the present invention include, although are not limited to, Code Division Multiple Access (CDMA) and WCDMA cellular radiotelephone portable devices for transmitting and receiving spread spectrum signals, Global System for Mobile communication (GSM) cellular radiotelephone, Time Division Multiple Access (TDMA), Extended-TDMA (E-TDMA), General Packet Radio Service (GPRS), Extended GPRS, and the like.
- CDMA Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- TDMA Time Division Multiple Access
- E-TDMA Extended-TD
- a portable communication device may refer to, but is not limited to, a mobile station, a portable radiotelephone device, a cell-phone, a cellular device, personal computer, Personal Digital Assistant (PDA), user equipment and the like.
- Some embodiments of the invention may be implemented, for example, using a machine-readable medium or article which may store an instruction or a set of instructions that, if executed by a machine (for example, by a station of wireless communication system and/or by other suitable machines), cause the machine to perform a method and/or operations in accordance with embodiments of the invention.
- a machine for example, by a station of wireless communication system and/or by other suitable machines
- Such machine may include, for example, any suitable processing platform, computing platform, computing device, processing device, computing system, processing system, computer, processor, or the like, and may be implemented using any suitable combination of hardware and/or software.
- the machine-readable medium or article may include, for example, any suitable type of memory unit, memory device, memory article, memory medium, storage device, storage article, storage medium and/or storage unit, for example, memory, removable or non ⁇ removable media, erasable or non-erasable media, writeable or re-writeable media, digital or analog media, hard disk, floppy disk, Compact Disk Read Only Memory (CD-ROM), Compact Disk Recordable (CD-R), Compact Disk Rewriteable (CD- RW), optical disk, magnetic media, various types of Digital Versatile Disks (DVDs), or the like.
- any suitable type of memory unit for example, any suitable type of memory unit, memory device, memory article, memory medium, storage device, storage article, storage medium and/or storage unit, for example, memory, removable or non ⁇ removable media, erasable or non-erasable media, writeable or re-writeable media, digital or analog media, hard disk, floppy disk, Compact Disk Read Only Memory (CD-ROM), Compact Disk Recordable (CD
- the instructions may include any suitable type of code, for example, source code, compiled code, interpreted code, executable code, static code, dynamic code, or the like, and may be implemented using any suitable high-level, low-level, object-oriented, visual, compiled and/or interpreted programming language, e.g., C 5 C++, Java, high level design programming language, assembly language, machine ⁇ code, or the like.
- wireless communication system 100 may include a communication device 101 and a communication device 102.
- communication device 101 may include a base band (BB) symbol generator 114, a splitter 116, an amplitude path 118, a phase path 120, a power amplifier 122 and one or more antennas, for example antenna 108.
- Communication device 102 may include at least a receiver 110 and one or more antennas, for example antenna 112.
- communication device 101 may communicate with communication device 102 over a communication channel 104, if desired.
- the communication system 100 may be part of a cellular communication system (with one of communication devices 101, 102 being a base station and the other a mobile station, or with both communication devices 100, 102 being mobile stations);, a pager communication system, a personal digital assistant and a server, a wireless local area network (WLAN), a metropolitan area networks (WMAN) or the like.
- a cellular communication system with one of communication devices 101, 102 being a base station and the other a mobile station, or with both communication devices 100, 102 being mobile stations
- a pager communication system a personal digital assistant and a server
- WLAN wireless local area network
- WMAN metropolitan area networks
- antennas 108 and 112 may be for example, a dipole antenna, a Yagi antenna, an internal antenna, a multi-pole antenna, and the like.
- communication devices 101 may include a receiver and transmitter.
- baseband symbol generator 114 of communication device 101 may generate a signal of baseband symbols.
- Splitter 116 may split the signal into its instantaneous amplitude and phase/frequency components.
- Amplitude path 118 may modulate and amplify the amplitude components.
- Phase path 120 may include a phase modulator that may modulate and up-convert the phase/frequency components.
- Power amplifier 122 may amplify the output of phase modulator 120 with a gain controlled by the output of amplitude path 118.
- Antenna 108 may coupled to power amplifier (PA) 122 and may transmit the output of power amplifier 122.
- baseband symbol generator 114 may be implemented in accordance with a wireless standard, if desired.
- Splitter 116 may be implemented in hardware, software or firmware or any combination of hardware and/or software thereof.
- an input of power amplifier 122 may be operably coupled to a multiplier (not shown), if desired.
- phase path 120 may include components that may compensate on deviation in parameters of phase path 120.
- phase path 120 may include a phase modulator to vary a phase component of a signal.
- phase path 120 may output a compensated signal that may be amplified by PA 122, [0018]
- FIG. 2 a block-diagram illustration of an exemplary phase path 200 according to an embodiment of the invention is shown.
- phase path 200 may include a filter 210, a phase modulator unit 220, a filter generator 230, a memory 240 that may include filters 242 and 244, a calculator 250, one or more filter parameters 255, a measurement unit 260 and an interpolator 270.
- phase modulator unit 220 may include a phase lock loop (PLL), a synthesizer and the like (not shown). Phase modulator unit 220 may vary a phase component of a signal.
- Measurement unit 260 may measure one or more parameters of phase modulator unit 220.
- measurement unit 260 may measure parameters such as, for example PLL open loop gain, loop filter cut off and the like.
- filter generator 230 may receive the parameter from measurement unit 260 (e.g. shown with a dotted line) and may generate a filter based on the parameter, for example, filter 210.
- Filter 210 may provide a compensated signal 215 to phase modulation unit 220.
- Phase modulation unit 220 may use compensated signal 215 to compensate deviation of one or more parameters of phase modulator unit 220.
- filter generator 230 may calculate filter 21O 5 in some other embodiments calculator 250 may calculate filter 210 and in other embodiments of the invention filter generator 230 and calculator 250 may be embedded into a single unit, if desired.
- calculator 250 may calculate a coefficients vector C - F[X ⁇ o f filter 210 where:
- X - may be a vector of parameters of dimension N;
- F - may be a function that makes optimal mapping of the vector X to the coefficients vector C .
- the vector of measured parameters may be v ⁇ «0
- filter generator 230 and/or calculator 250 may repeat the above calculation if the value of X Act u al varied.
- calculator 250 may calculate one or more predetermined filters for example, filters 242 and 244, based on one or more filter parameters 255.
- filter 242 may include a set of ko and Wo parameters wherein, ko may be a PLL open loop gain parameter and wo may be filter bandwidth parameters.
- filter 244 may include ki and wi filter parameters s if desired.
- filters 242 and 244 may be stored in memory 240.
- Memory 240 may be a Flash memory, random access memory (RAM) or the Eke.
- Interpolator 270 may interpolate one or more measured parameters X Acmal with the two or more stored predetermined filters.
- Interpolator 270 may interpolate the parameters according to interpolation function F , if desired.
- C Opt may be an optimal vector of coefficients of filter 210.
- memory 240 may be referred as a bank of filters, although the scope of the present invention is not limited in this respect.
- calculator 250 may calculate two or more predetermined filters based on combinations of two or more filter parameters.
- the predetermined filters may be pre-calculation and the calculations results for example filters coefficients of may be stored in memory 240.
- the predetermined filters may be calculated and stored according to a request and/or periodically, if desired.
- FIG. 3 a flow chart of a method of generating a filter according to exemplary embodiment of the invention is shown.
- the parameters may be parameters of phase modulation unit 220 (as is shown in FIG. 2) such as, for example voltage controlled oscillator (VCO) gain K, fractional N synthesizer division ratio, loop filter H(s) and the like.
- VCO voltage controlled oscillator
- the parameters may be represented by a vector.
- a parameter in vector X may have a minimum and maximum value and quantization levels.
- a grid vector Xk may be defined for parameter ⁇ of X with all possible quantization levels (text block 320).
- Wi may be denoted as the size of vector Xk (number of quantization levels of**) and -W may be denoted as the vector of all k .
- R may be a matrix of the predetermined filters.
- Matrix R may be an N dimension matrix where a size of a dimension may be determined by M .
- An element may be a vector of dimension CN- Vector ⁇ may be the vector of indexes of the "k vectors where
- calculator 250 may calculate matrix R of predetermined filters (e.g. filters 242, 244) according to
- matrix R may be stored in memory 240 and may be referred as pre-stored filters, although the scope of the present invention is not limited in this respect.
- measurement unit 250 may measure actual parameters of phase modulation unit 220 (text block 340). For example, measurement unit 250 may measure actual parameters of phase modulation unit 220 (text block 340).
- example may be a vector of the actual parameters and optimal C
- Filter generator 230 may generate filter 220 by interpolation of the actual parameters, e.g. X Acluat from pre-
- the calculation of filter 210 may be repeated according to variations of the measured parameters, e.g. X Aam! (text block
- phase modulation unit 220 may be a phase lock loop (PLL) (not shown) and may include,
- filter 210 may be calculated as follows:
- phase modulation unit 220 may be any phase modulation unit.
- N - may be integer frequency division ratio
- ⁇ - may be fractional frequency division ratio
- H(s) - may be the loop filter.
- the transfer function of filter 210 may be:
- H(s) may be composed of zeros and poles then ⁇ pmay be denoted as the variation of the zeros and poles from their nominal value, and ⁇ £may be denoted as the variation of K from its nominal value.
- the minimum and maximum range of ⁇ pand Ak may be set to ⁇ Pmax and ⁇ Kmax respectively.
- the grid may be set to dp and dk, respectively.
- matrix R may consist of
- C Opl may be calculated by:
- X 0 - may be defined as the closest point to X Aaual ;
- F ⁇ X ⁇ aual ) - may be the linear interpolation function.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Physics & Mathematics (AREA)
- Spectroscopy & Molecular Physics (AREA)
- Power Engineering (AREA)
- Digital Transmission Methods That Use Modulated Carrier Waves (AREA)
- Transmitters (AREA)
- Stabilization Of Oscillater, Synchronisation, Frequency Synthesizers (AREA)
- Cable Transmission Systems, Equalization Of Radio And Reduction Of Echo (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| HK07102729.7A HK1095230B (en) | 2004-09-01 | 2005-07-28 | Adaptive pre-emphasis filtering in a phase modulator |
| DE112005002036T DE112005002036T5 (en) | 2004-09-01 | 2005-07-28 | Adaptive pre-emphasis filtering in a phase modulator |
| CN2005800274388A CN101080910B (en) | 2004-09-01 | 2005-07-28 | Adaptive pre-emphasis filtering in a phase modulator |
| GB0700223A GB2429888B (en) | 2004-09-01 | 2005-07-28 | Adaptive pre-emphasis filtering in a phase modulator |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US10/930,857 US7477686B2 (en) | 2004-09-01 | 2004-09-01 | Apparatus and method of adaptive filter |
| US10/930,857 | 2004-09-01 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006028607A1 true WO2006028607A1 (en) | 2006-03-16 |
Family
ID=35539653
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2005/026707 Ceased WO2006028607A1 (en) | 2004-09-01 | 2005-07-28 | Adaptive pre-emphasis filtering in a phase modulator |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US7477686B2 (en) |
| CN (1) | CN101080910B (en) |
| DE (1) | DE112005002036T5 (en) |
| GB (1) | GB2429888B (en) |
| TW (1) | TWI294213B (en) |
| WO (1) | WO2006028607A1 (en) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US8750364B2 (en) | 2011-12-31 | 2014-06-10 | St-Ericsson Sa | Interpolation of filter coefficients |
| CN106921603A (en) * | 2017-03-10 | 2017-07-04 | 成都金广通科技有限公司 | Gather the phase modulation circuit of the mobile terminal of geologic data |
| CN108509671B (en) * | 2018-01-30 | 2021-06-01 | 西安电子科技大学 | Microwave filter coupling parameter extraction method |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6008703A (en) * | 1997-01-31 | 1999-12-28 | Massachusetts Institute Of Technology | Digital compensation for wideband modulation of a phase locked loop frequency synthesizer |
| US20040041638A1 (en) * | 2000-05-31 | 2004-03-04 | Guillaume Vilcocq | Digital modulation synthesizer |
| WO2005062563A1 (en) * | 2003-12-15 | 2005-07-07 | Intel Corporation | Fractional-n sigma-delta modulator comprising an adaptive compensation filter that compensates for the undesired effects of the phase locked loop and methods thereof |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5309482A (en) * | 1992-03-30 | 1994-05-03 | Novatel Communications Ltd. | Receiver having an adjustable matched filter |
| GB9222103D0 (en) * | 1992-10-21 | 1992-12-02 | Lotus Car | Adaptive control system |
| WO1997017692A1 (en) * | 1995-11-07 | 1997-05-15 | Euphonics, Incorporated | Parametric signal modeling musical synthesizer |
| US6301298B1 (en) * | 1998-11-03 | 2001-10-09 | Tektronix, Inc. | Adaptive equalizer with complex signal regeneration and method of operation |
| US7002417B2 (en) * | 2003-03-21 | 2006-02-21 | Nokia Corporation | RC and SC filter compensation in a radio transceiver |
-
2004
- 2004-09-01 US US10/930,857 patent/US7477686B2/en not_active Expired - Fee Related
-
2005
- 2005-07-28 DE DE112005002036T patent/DE112005002036T5/en not_active Withdrawn
- 2005-07-28 CN CN2005800274388A patent/CN101080910B/en not_active Expired - Fee Related
- 2005-07-28 WO PCT/US2005/026707 patent/WO2006028607A1/en not_active Ceased
- 2005-07-28 GB GB0700223A patent/GB2429888B/en not_active Expired - Fee Related
- 2005-08-08 TW TW094126727A patent/TWI294213B/en not_active IP Right Cessation
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6008703A (en) * | 1997-01-31 | 1999-12-28 | Massachusetts Institute Of Technology | Digital compensation for wideband modulation of a phase locked loop frequency synthesizer |
| US20040041638A1 (en) * | 2000-05-31 | 2004-03-04 | Guillaume Vilcocq | Digital modulation synthesizer |
| WO2005062563A1 (en) * | 2003-12-15 | 2005-07-07 | Intel Corporation | Fractional-n sigma-delta modulator comprising an adaptive compensation filter that compensates for the undesired effects of the phase locked loop and methods thereof |
Also Published As
| Publication number | Publication date |
|---|---|
| GB0700223D0 (en) | 2007-02-14 |
| US7477686B2 (en) | 2009-01-13 |
| TW200620818A (en) | 2006-06-16 |
| US20060045203A1 (en) | 2006-03-02 |
| HK1095230A1 (en) | 2007-04-27 |
| GB2429888A (en) | 2007-03-07 |
| GB2429888B (en) | 2008-12-31 |
| TWI294213B (en) | 2008-03-01 |
| DE112005002036T5 (en) | 2007-10-04 |
| CN101080910B (en) | 2012-01-25 |
| CN101080910A (en) | 2007-11-28 |
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