Ex parte OGREN - Page 3




          Appeal No. 1997-1373                                                        
          Application No. 08/478,811                                                  


               assigning each base station of the radio system as a                   
          corresponding one particle of said plurality of particles of                
          said mathematical model wherein each of said radio stations                 
          corresponds to a discrete state of each of said particles;                  
               assigning selected channels so they are represented by                 
          different states of a particles so that changes in said                     
          distribution of channels are represented respectively by changes            
          in the states of said particles;                                            
               representing interference between base station channels by             
          an interaction between said states of different particles of                
          said plurality of particles;                                                
               representing a change in an interference range coverage                
          area ratio (C/I) by a change in energy of said mathematical                 
          model of said heat bath;                                                    
               representing the total number of base stations and channels            
          in said radio systems by the number of particles and states in              
          said mathematical model wherein said number of particles and                
          states correspond to those number of particles and states                   
          necessary to meet a predetermined traffic demand with a maximum             
          acceptable level of interference between channels;                          
               wherein a first condition of said radio system is specified            
          by the number of said plurality of particles and interaction                
          between said number of particles and said heat bath and further             
          wherein one of a redistribution of said radio channels and a                
          change in number of channels is represented in said mathematical            
          model by a change in said states and said interactions of said              
          particles;                                                                  
               setting an initial temperature for said heat bath of said              
          mathematical model and reducing said temperature in a series of             
          steps so that the states of the particles change in accordance              
          with a stochastic process in order to establish channel                     
          allocation; and                                                             
               changing energy of said heat bath in order to achieve an               
          energy content which corresponds to an acceptable interaction               

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