EP2148451A2

Physical layer processing for a wireless communication system using code division multiple access background

Abstract

The invention includes various embodiments for use in physical layer processing. One embodiment determines the address mapping of bits in the physical channel buffer from the address of bits in the first interleaver buffer. The physical channel buffer addresses are determined corresponding to addresses of the bits after rate matching, bit scrambling, second interleaving and physical channel mapping. The bits are directly read from the first interleaver buffer and written to the physical channel buffer using the determined physical channel buffer addresses. Another embodiment determines the address mapping of bits in the first interleaver buffer from the address of bits in the physical channel buffer. The first interleaver buffer addresses are determined corresponding to addresses of the bits after reverse rate matching, reverse bit scrambling, reverse second interleaving and reverse physical channel mapping. The bits are directly read from the determined first interleaver buffer addresses and written to the physical channel buffer addresses.

EP2148451A2, drawing sheet 1
Sheet 1 of 77

Term

Term ended

Projected expiry passed 16 April 2022, 4.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

7 claims: 2 independent, 5 dependent

  1. 1
    A method for determining an address for bit after physical channel mapping, the method comprising:categorizing the bits into a first, second, third and fourth case, the first case is for bits transferred in a single resource unit in a time slot, the second case is for bits transferred in a plurality of downlink resource units, the third case is for bits transferred in an uplink resource unit where a spreading factor of data in a first resource unit is greater than or equal to a spreading factor of a second resource unit, the fourth case is for bits transferred in an uplink resource unit where a spreading factor of data in a first resource unit is less than a spreading factor of a second resource unit;for bits in the first case, determining the address after physical channel mapping using an address of those bits prior to physical channel mapping;for bits in the second case, determining a switch point, classifying those bits into one of four categories, the four categories including forward before the switch point, reverse before the switch point, forward after the switch point and reverse after the switch point, and determining the address for those bits using the category classification;for bits in the third case, determining a switch point, classifying those bits into one of three categories, the three categories including forward before the switch point, reverse before the switch point and reverse after the switch point, and determining the address for those bits using the category classification;and for bits in the fourth case, determining a switch point, classifying those bits into one of three categories, the three categories including forward before the switch point, reverse before the switch point and reverse after the switch point, and determining the address for those bits using the category classification.
  2. 5
    A user equipment capable of determining an address for bits after physical channel mapping, the user equipment comprising:means for categorizing the bits into a first, second, third and fourth case, the first case is for bits transferred in an only resource unit in a time slot, the second case is for bits transferred in a downlink resource unit, the third case is for bits transferred in an uplink resource unit where a spreading factor of data in a first resource unit is greater than or equal to a spreading factor of a second resource unit, the fourth case is for bits transferred in an uplink resource unit where a spreading factor of data in a first resource unit is less than a spreading factor of a second resource unit;for bits in the first case, means for determining the address after physical channel mapping using an address of those bits prior to physical channel mapping;for bits in the second case, means for determining a switch point, for classifying those bits into one of four categories, the four categories including forward before the switch point, reverse before the switch point and forward after the switch point and reverse after the switch point, and for determining the address for those bits using the category classification;for bits in the third case, means for determining a switch point, for classifying those bits into one of three categories, the three categories including forward before the switch point, reverse before the switch point and reverse after the switch point, and for determining the address for those bits using the category classification;and for bits in the third case, means for determining a switch point, for classifying those bits into one of three categories, the three categories including forward before the switch point, reverse before the switch point and reverse after the switch point, and for determining the address for those bits using the category classification.