IP Library Granted Patent US 9,191,028
Granted Patent B2
US 9,191,028 · App. 14/619,945 · Granted Nov 17, 2015

Complex digital signal compression device, method and computer-readable storage medium, complex digital signal expansion device, method and computer-readable storage medium, and communication device

Inventor: Yasuharu Amezawa (Kanagawa-ken, JP)
Assignee: Mobile Techno Corp.
H03M7/30H04L27/34
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Quick Facts
Patent No.
US 9,191,028
App. No.
14/619,945
Granted
Nov 17, 2015
Kind
B2
Abstract

An object of the present invention is to provide the compression device and the expansion device of a complex digital signal, which further raise the compression ratio of the compression digital signal. The compression device of the present invention comprises: first section that acquires a first phase and a second phase, wherein with a complex digital signal being inputted into the complex digital signal compression device, the first phase is a phase, in polar coordinates, which the complex digital signal has, and it is assumed that the complex digital signal inputted into the complex digital signal compression device is expressed as a sum of two complex digital signals with an equal amplitude, phases of which are centered at the first phase and are shifted by a phase that equals to the second phase in the positive and negative direction respectively; and second section that compresses the first phase and the second phase respectively by performing quantization. The expansion device of the present invention comprises third section and fourth section which perform the inverse processing of the second section and the first section, respectively, mentioned above.

Claims (32)

1. A complex digital signal compression device that compresses a complex digital signal, comprising:

signal/two-phase conversion section that acquires a first phase and a second phase, wherein with a complex digital signal being inputted into the complex digital signal compression device, the first phase is a phase, in polar coordinates, which the complex digital signal has, and it is assumed that the complex digital signal inputted into the complex digital signal compression device is expressed as a sum of two complex digital signals with an equal amplitude, phases of which are centered at the first phase and are shifted by a phase that equals to the second phase in the positive and negative direction respectively; and

compression section that compresses the first phase and the second phase respectively by performing quantization.

2. A complex digital signal compression device according to claim 1 ,

further comprising downsampling section which decreases a sampling rate of an inputted complex digital signal and which imparts a signal with a decreased sampling rate to the signal/two-phase conversion section.

3. A communication device which compresses a complex digital signal by a complex digital signal compression device mounted thereon and which transmits a compressed signal toward an opposite communication device,

characterized in that a complex digital signal compression device according to claim 2 is applied as the complex digital signal compression device.

4. A complex digital signal expansion device that expands a compressed signal compressed by the complex digital signal compression device of claim 1 , comprising:

expansion section that extracts quantized values of the first phase and the second phase included in the compressed signal and performs inverse quantization on each of the quantized values; and

two-phase/signal conversion section that restores a complex digital signal based on the first phase and the second phase which the expansion section has acquired.

5. A complex digital signal expansion device according to claim 4 ,

further comprising upsampling section that increases a sampling rate of a complex digital signal which the two-phase/signal conversion section has restored.

6. A communication device which expands a compressed signal arriving from an opposite communication device by a complex digital signal expansion device mounted thereon and which restores a complex digital signal,

characterized in that a complex digital signal expansion device according to claim 5 is applied as the complex digital signal expansion device.

7. A communication device which expands a compressed signal arriving from an opposite communication device by a complex digital signal expansion device mounted thereon and which restores a complex digital signal,

characterized in that a complex digital signal expansion device according to claim 4 is applied as the complex digital signal expansion device.

8. A method for expanding a complex digital signal comprising the steps of:

inputting a compressed signal compressed by the complex digital signal compression device of claim 1 into a digital signal expansion device;

extracting quantized values of the first phase and the second phase included in the compressed signal;

expansion where inverse quantization of each of the first phase and the second phase performed; and

two-phase/signal converting where a complex digital signal based on the first phase and the second phase which the expansion step has acquired are restored.

9. A non-transitory computer-readable storage medium having instructions stored thereon comprising:

expansion means, wherein with a compressed signal compressed by the complex digital signal compression device of claim 1 being inputted, the expansion means extracts quantized values of the first phase and the second phase included in the compressed signal and performs inverse quantization on each of the quantized values; and

two-phase/signal conversion means that restores a complex digital signal based on the first phase and the second phase which the expansion means has acquired.

10. A communication device which compresses a complex digital signal by a complex digital signal compression device mounted thereon and which transmits a compressed signal toward an opposite communication device,

characterized in that a complex digital signal compression device according to claim 1 is applied as the complex digital signal compression device.

11. A method for compressing a complex digital signal comprising the steps of:

signal/two-phase conversion that acquires a first phase and a second phase, wherein with a complex digital signal being inputted into a complex digital signal compression device, the first phase is a phase, in polar coordinates, which the complex digital signal has, and it is assumed that the complex digital signal inputted into the complex digital signal compression device is expressed as a sum of two complex digital signals with an equal amplitude, phases of which are centered at the first phase and are shifted by a phase that equals to the second phase in the positive and negative direction respectively; and

compressing the first phase and the second phase respectively by performing quantization.

12. A non-transitory computer-readable storage medium having instructions stored thereon comprising:

signal/two-phase conversion means that acquires a first phase and a second phase, wherein with a complex digital signal being inputted into a complex digital signal compression device, the first phase is a phase, in polar coordinates, which the complex digital signal has, and it is assumed that the complex digital signal inputted into the complex digital signal compression device is expressed as a sum of two complex digital signals with an equal amplitude, phases of which are centered at the first phase and are shifted by a phase that equals to the second phase in the positive and negative direction respectively; and

compression means that compresses the first phase and the second phase respectively by performing quantization.

Assignments (2)
CHANGE OF NAME Recorded Nov 21, 2025
From: MOBILE TECHNO CORP.
To: 1FINITY MOBILE TECHNO, INC.
Reel/Frame 073671/0940 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2015
From: AMEZAWA, YASUHARU
To: MOBILE TECHNO CORP.
Reel/Frame 034947/0098 →
Priority Claims (1)
JP 2014-031432 · Feb 21, 2014 · national
Continuity (1)
Related Publication 20150244395A1 · Aug 27, 2015