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Analysis of Cognitive Radio Spectrum Access Student Name: Yeung Wing Yu Supervisor:  	Dr. Wong, Eric W M Assessor:  Prof. Zukerman, Moshe
Contents Objectives of Final Year Project Background about CR Mathematical model Simulation Numerical Results & Discussions Conclusion
Objectives of FYP Analyze cognitive system performance Simulation programs & mathematical analysis Effects on providing extra buffers
Allocation of Radio Spectrum Source: Cognitive Radio and Dynamic Spectrum Access [4]
Background about CR ,[object Object]
CR (Cognitive Radio)
Licensed & unlicensed
PriorityHigher priority Lower priority Primary User Cognitive User
Operations for Cog. Radio System We are Cognitive (unlicensed) Users!! We are Primary (licensed) Users!! ... ... Group A: Cognitive Users ... A1 AN ANK AN(K-1)+1 B1 BK Group B: Primitive Users ... Frequency
A parking lot with stalls
Queuing Model ,[object Object]
M/M/n/n model
M/M/n/n+Q model
M/M/n/n/S model
M/M/n/n+Q/S modelBasic Model Advanced Model Av. Interarrival Rate No. of Servers Population Av. Service Rate Extra Buffers
The New Model ,[object Object]
Primary:
n Servers, finite Buffers, finite population
M/M/n/n+Q/S model
Cognitive:
n x N Servers, finite Buffers, finite population
M/M/nN/nN+Q/S model,[object Object]
Buffers – Bi
Population – Ml
Cognitive Users seem as transparent
M/M/n/n+Q/S model
Av. Interarrival rate – 1/λl
Av. Holding time – 1/μlPrimary Users
Normalization State Probabilities: Blocking Probability:
Cognitive Users ,[object Object]
Buffers – Bj
Population – Mc
M/M/nN/nN+Q/S model
Av. Interarrival rate – 1/λc
Av. Holding time – 1/μcCognitive Users Cognitive Users Primary Users i, j

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FYP presentation

  • 1. Analysis of Cognitive Radio Spectrum Access Student Name: Yeung Wing Yu Supervisor: Dr. Wong, Eric W M Assessor: Prof. Zukerman, Moshe
  • 2. Contents Objectives of Final Year Project Background about CR Mathematical model Simulation Numerical Results & Discussions Conclusion
  • 3. Objectives of FYP Analyze cognitive system performance Simulation programs & mathematical analysis Effects on providing extra buffers
  • 4. Allocation of Radio Spectrum Source: Cognitive Radio and Dynamic Spectrum Access [4]
  • 5.
  • 8. PriorityHigher priority Lower priority Primary User Cognitive User
  • 9. Operations for Cog. Radio System We are Cognitive (unlicensed) Users!! We are Primary (licensed) Users!! ... ... Group A: Cognitive Users ... A1 AN ANK AN(K-1)+1 B1 BK Group B: Primitive Users ... Frequency
  • 10. A parking lot with stalls
  • 11.
  • 15. M/M/n/n+Q/S modelBasic Model Advanced Model Av. Interarrival Rate No. of Servers Population Av. Service Rate Extra Buffers
  • 16.
  • 18. n Servers, finite Buffers, finite population
  • 21. n x N Servers, finite Buffers, finite population
  • 22.
  • 25. Cognitive Users seem as transparent
  • 28. Av. Holding time – 1/μlPrimary Users
  • 29. Normalization State Probabilities: Blocking Probability:
  • 30.
  • 35. Av. Holding time – 1/μcCognitive Users Cognitive Users Primary Users i, j
  • 36. Queuing Model 0,0 0,1 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1,0 0,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 2,5 2,0 0,0 2,1 2,2 2,3 2,4 3 buffers for cognitive users 3,0 0,0 3,1 3,2 3,3 Orange: Cognitive queuing only Purple: Both users queuing Population (Primary) = 6 (with 2 buffers) Population (cognitive) = 10 (with 3 buffers) No. of Servers = 3 One primary band can be used by 2 cognitive users, or N = 2 4,0 0,0 4,1 4,2 4,3 5,0 0,0 5,1 5,2 5,3
  • 37. Queuing Model iN + j < nN 0,0 0,1 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1,0 0,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 2,5 2,0 0,0 2,1 2,2 2,3 2,4 3 buffers for cognitive users 3,0 0,0 3,1 3,2 3,3 Orange: Cognitive queuing only Purple: Both users queuing Population (Primary) = 6 (with 2 buffers) Population (cognitive) = 10 (with 3 buffers) No. of Servers = 3 One primary band can be used by 2 cognitive users, or N = 2 4,0 0,0 4,1 4,2 4,3 5,0 0,0 5,1 5,2 5,3
  • 38. Queuing Model iN + j ≥ nN and i < n and j ≤ (n-i)N + Bj and (i+1)N + j ≤ nN + Bj 0,0 0,1 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1,0 0,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 2,5 2,0 0,0 2,1 2,2 2,3 2,4 3 buffers for cognitive users 3,0 0,0 3,1 3,2 3,3 Orange: Cognitive queuing only Purple: Both users queuing Population (Primary) = 6 (with 2 buffers) Population (cognitive) = 10 (with 3 buffers) No. of Servers = 3 One primary band can be used by 2 cognitive users, or N = 2 4,0 0,0 4,1 4,2 4,3 5,0 0,0 5,1 5,2 5,3
  • 39. Queuing Model iN + j ≥ nN and i < n and j ≤ (n-i)N + Bj and (i+1)N + j > nN + Bj 0,0 0,1 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1,0 0,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 2,5 2,0 0,0 2,1 2,2 2,3 2,4 3 buffers for cognitive users 3,0 0,0 3,1 3,2 3,3 Orange: Cognitive queuing only Purple: Both users queuing Population (Primary) = 6 (with 2 buffers) Population (cognitive) = 10 (with 3 buffers) No. of Servers = 3 One primary band can be used by 2 cognitive users, or N = 2 4,0 0,0 4,1 4,2 4,3 5,0 0,0 5,1 5,2 5,3
  • 40. Queuing Model i ≥ n and j ≤ Bj 0,0 0,1 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1,0 0,0 1,1 1,2 1,3 1,4 1,5 1,6 1,7 2,5 2,0 0,0 2,1 2,2 2,3 2,4 3 buffers for cognitive users 3,0 0,0 3,1 3,2 3,3 Orange: Cognitive queuing only Purple: Both users queuing Population (Primary) = 6 (with 2 buffers) Population (cognitive) = 10 (with 3 buffers) No. of Servers = 3 One primary band can be used by 2 cognitive users, or N = 2 4,0 0,0 4,1 4,2 4,3 5,0 0,0 5,1 5,2 5,3
  • 41.
  • 42.
  • 43.
  • 44.
  • 45.
  • 46.
  • 47. Numerical Results & Discussions Ml = 20 , Mc = 20 and n = 5, N = 4, UTP = 0.5
  • 48.
  • 49.
  • 50.
  • 51. Numerical Results & Discussions Ml = 20 , Mc = 20 and n = 5, UTP = 0.5, Bi= 4 N=2 N=3 N=4 N=5
  • 52. Numerical Results & Discussions
  • 53. Numerical Results & Discussions
  • 54.
  • 55. Small portions of extra buffers reduce blocking & enhance throughput for both users
  • 56. Standardisation for Cog. Radio System in progress
  • 57. Violation – Unlicensed users MUST follow the rules
  • 58.