IL178601A

Methods and apparatus for selecting between multiple carriers based on signal energy measurements

Abstract

This record has no abstract on file.

IL178601A, drawing sheet 1
Sheet 1 of 19

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

34 claims: 3 independent, 31 dependent

  1. 1
    WHAT IS CLAIMED IS; 1. A communications method for use in a wireless terminal in an OFDM communication 2 system, the method comprising:3 receiving a first signal in a first frequency band, said first signal including a plurality of 4 signal tones, each signal tone corresponding to a different frequency;5 performing a time to frequency conversion on said received signal to generate a set of 6 signal components corresponding to different signal tones in the first frequency band;7 determining the energy of each of a plurality of different signal components which 8 correspond to different signal tones within said first frequency band to generate a set of per 9 signal tone energy values, each per signal tone energy value corresponding to a different 10 frequency;L1 detecting, from the per tone energy value of said signal components, a signal component 12 corresponding to a beacon signal;and 13 determining, based on the frequency of the signal component detected to correspond to a 14 beacon signal, a carrier frequency corresponding to said beacon signal.
  2. 3
    The method of claim !,further comprising:2 making a handoff decision as a function of the amount of energy included in at least one 3 beacon si gn al component recei ved from the current network point of attachment and the amount 4 of energy included in the detected beacon signal component, said detected beacon signal 5 component having been transmitted by a network point of attachment which is different from the 6 current point of network attachment.
  3. 18
    20. The method of claim 18, wherein said first signal is received in a first period of time, the 2 method further comprising:3 receiving a second signal in a second period of time, said second signal including a 4 plurality of signal tones, each signal tone in said second signal corresponding to a different 5 frequency;6 performing a time to frequency conversion on said received second signal to generate a 7 second set of signal components corresponding to different signal tones in the first frequency 8 band;9 determining the energy of each of a plurality of different signal components in. said 10 second set of signal components to generate a second set of per signal tone energy values, each 11 per signal tone energy value in said second set of per signal tone energy values corresponding to 12 a different frequency;13 comparing the determined energy of each of said plurality of different signal components 14 to said threshed energy level;and 15 generating a second indicator signal indicating the presence of a second beacon signal 16 when said comparing step determines that said threshold energy level is exceeded.
  4. 19
    21. The method of claim 19, further comprising:2 determining which base station sector to use as a network point of attachment based on a 3 comparison of the determined energy of the first signal component and the determined energy of 4 the signal component in said second signal determined have an energy level exceeding said 5 threshold energy level.
  5. 23
    25. A wireless terminal for use in a communication system, the wireless terminal sector of said cell. 2 comprising:3 means for receiving a signal in a first period of time, said signal including a plurality of 4 signal tones, each signal tone corresponding to a different frequency;5 means for performing a time to frequency conversion on said received signal to generate 6 a set of signal components corresponding to different signal tones in a first frequency band;7 means for determining the energy of each of a plurality of. different signal components 8 which correspond to different frequencies within said first frequency band to generate a set of 9 per signal tone energy values, each per signal tone energy value corresponding to a different frequency;means for comparing the determined energy of each of said plurality of different signal components to a threshed energy level which is greater than the average per signal tone energy of said received signal to detect a signal component corresponding to a beacon signal;and means for determining if a handoff should be initiated to a network attachment point which transmitted a detected beacon signal and which uses a carrier frequency to transmit user data that is different from a carrier frequency in use by said wireless terminal to communicate 17 with a current point of network attachment.
  6. 25
    27. The wireless terminal of claim 25, wherein said threshold energy level is at least N times 2 the average signal energy of said received signal in said first frequency band, where N is a 3 positive value greater than 150.
  7. 33
    36. The wireless terminal of claim 33, further comprising:2 means for receiving a second signal in a second period of time, said second signal 3 including a plurality of signal tones, each signal tone in said second signal corresponding to a 4 different frequency;means for performing a time to frequency conversion on said received second signal to generate a second set of signal components corresponding to different signal tones in the first frequency band;means for determining the energy of each of a plurality of different signal components in said second set of signal components to generate a second set of per signal tone energy values, each per signal tone energy value in said second set of per signal tone energy values corresponding to a different frequency;means for comparing the determined energy of each of said plurality □f different signal components to said threshed energy level;and means for determining if a handoff should be initiated.
  8. 34
    37. The wireless terminal of claim 34, further comprising:means for determining which base station sector to use as a network point of attachment based on a comparison of the determined energy of the first signal component and the determined energy of the signal component in said second signal determined have an energy level exceeding said threshold energy level.