Apparatus and method for transmitting/receiving pilot signals in an OFDM communication system
First Claim
1. A method for transmitting a reference signal in a transmitter of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits the reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the method comprising the steps of:
- allocating subcarriers through which the reference signal is transmitted, the subcarriers being allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted;
performing an inverse fast Fourier transform (IFFT) on the reference signal by applying an IFFT size which is less than or equal to an IFFT size applied to the data signal; and
transmitting the IFFT-processed reference signal to a receiver.
1 Assignment
0 Petitions
Accused Products
Abstract
A radio communication system divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits a pilot signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the pilot signal. A transmitter allocates subcarriers through which the reference signal is transmitted, wherein the subcarriers are allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted, generates the pilot signal, performs an inverse fast Fourier transform (IFFT) on the pilot signal by applying an IFFT size which is less than or equal to an IFFT size applied to the data signal, and transmits the IFFT-processed reference signal to a receiver.
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Citations
24 Claims
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1. A method for transmitting a reference signal in a transmitter of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits the reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the method comprising the steps of:
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allocating subcarriers through which the reference signal is transmitted, the subcarriers being allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted;
performing an inverse fast Fourier transform (IFFT) on the reference signal by applying an IFFT size which is less than or equal to an IFFT size applied to the data signal; and
transmitting the IFFT-processed reference signal to a receiver. - View Dependent Claims (2, 3)
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4. A method for receiving a reference signal in a receiver of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits the reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the method comprising the steps of:
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receiving a signal and detecting the reference signal from the received signal, received through subcarriers allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted; and
performing a fast Fourier transform (FFT) on the reference signal by applying an FFT size which is less than or equal to an FFT size applied to the data signal. - View Dependent Claims (5, 6)
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7. A method for transmitting a signal in a transmitter of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits a reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the method comprising the steps of:
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performing an inverse fast Fourier transform (IFFT) on the data signal according to a first IFFT size;
allocating subcarriers through which the reference signal is transmitted, the subcarriers being allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted;
performing an IFFT on a reference signal according to a second IFFT size which is less than or equal to the first IFFT size;
multiplexing the IFFT-processed data signal and the IFFT-processed reference signal; and
transmitting the multiplexed signal to a receiver. - View Dependent Claims (8, 9)
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10. A method for receiving a signal in a receiver of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits a reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the method comprising the steps of:
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demultiplexing a received signal into the reference signal and the data signal;
performing a fast Fourier transform (FFT) on the data signal according to a first FFT size; and
performing an FFT on the reference signal received through subcarriers allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted, according to a second FFT size which is less than or equal to the first FFT size. - View Dependent Claims (11, 12)
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13. An apparatus for transmitting a reference signal in a transmitter of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits the reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the apparatus comprising:
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an inverse fast Fourier transform (IFFT) unit for allocating subcarriers through which the reference signal is transmitted, the subcarriers being allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted, and performing an IFFT on the reference signal by applying an IFFT size which is less than or equal to an IFFT size applied to the data signal; and
a transmitter for, transmitting the IFFT-processed reference signal to a receiver. - View Dependent Claims (14, 15)
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16. An apparatus for receiving a reference signal in a receiver of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits the reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the apparatus comprising:
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a receiver for receiving a signal and detecting the reference signal from the received signal, received through subcarriers allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted; and
a fast Fourier transform (FFT) unit for performing an FFT on the reference signal by applying an FFT size which is less than or equal to an FFT size applied to the data signal. - View Dependent Claims (17, 18)
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19. An apparatus for transmitting a signal in a transmitter of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits a reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the apparatus comprising:
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a first inverse fast Fourier transform (IFFT) unit for performing an IFFT on the data signal according to a first IFFT size;
a second IFFT unit for allocating subcarriers through which the reference signal is transmitted, the subcarriers being allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted, and performing an IFFT on the reference signal according to a second IFFT size which is less than or equal to the first IFFT size; and
a transmitter for multiplexing the IFFT-processed data signal and the IFFT-processed reference signal, and transmitting the multiplexed signal to a receiver. - View Dependent Claims (20, 21)
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22. An apparatus for receiving a signal in a receiver of a radio communication system which divides an entire frequency band into a plurality of subcarrier bands, forms a symbol with signals on the subcarrier bands, forms a frame with a plurality of symbols, transmits a reference signal within symbols in a predetermined position of the frame, and transmits a data signal within symbols other than the symbols for transmitting the reference signal, the apparatus comprising:
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a demultiplexer for demultiplexing a received signal into the reference signal and the data signal;
a first fast Fourier transform (FFT) unit for performing an FFT on the data signal according to a first FFT size; and
a second FFT unit for performing an FFT on the reference signal from the received signal, received through subcarriers allocated to have an exclusive relation with subcarriers through which reference signals of other transmitters are transmitted, according to a second FFT size which is less than or equal to the first FFT size. - View Dependent Claims (23, 24)
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Specification