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Bandwidth Guaranteed Call Admission Control Scheme in IEEE 802.16 Mobile WiMAX with QoS Support

Bandwidth Guaranteed Call Admission Control Scheme in IEEE 802.16 Mobile WiMAX with QoS Support. Speaker: 黃筱婷 指導教授 : 柯開維 教授 Date: 2011/05/23. Outline. Introduction Proposed Bandwidth Guaranteed CAC Scheme Analytical Model Numerical Results Conclusion Future Work Reference.

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Bandwidth Guaranteed Call Admission Control Scheme in IEEE 802.16 Mobile WiMAX with QoS Support

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  1. Bandwidth Guaranteed Call Admission Control Scheme in IEEE 802.16 Mobile WiMAX with QoS Support Speaker: 黃筱婷 指導教授: 柯開維 教授 Date: 2011/05/23

  2. Outline • Introduction • Proposed Bandwidth Guaranteed CAC Scheme • Analytical Model • Numerical Results • Conclusion • Future Work • Reference

  3. Introduction

  4. QoS Architecture for IEEE 802.16 MAC Protocol

  5. priority 高 低 QoS Classes

  6. Motivation • [2]提了一個Bandwidth and Delay Guaranteed CAC scheme,利用[3]提出的公式 ,計算出rtPS的delay後再依據所需頻寬大小判斷是否需降階,決定是否能接收此連線。 • 優點:此方法有考慮到delay與handoff的狀況 • 缺點:一次將整個class的所有連線都降一階,會讓系統的utilization下降,容易造成浪費的情況。 • 所以我們提出了要一個一個降的並加入recovery的方法,希望能大幅增加utilization。

  7. Motivation(cont.)

  8. Outline • Introduction • Proposed Bandwidth Guaranteed CAC Scheme • Analytical Model • Numerical Results • Conclusion • Future Work • Reference

  9. Proposed CAC Scheme • H:Handoff, N:New call • Priority: H-UGS>H-rtPS>N-UGS>N-rtPS >H-nrtPS>N-nrtPS

  10. Degradation1 • (UGS,rtPS1,rtPS2,rtPS3,nrtPS1, nrtPS2,nrtPS3) • 使用於有New Call UGS/rtPS與Handoff nrtPS連線想要進來的時候 • 可以讓nrtPS的連線降階,盡量讓提出要求的連線都能進來

  11. Degradation2 • (UGS,rtPS1, rtPS2,rtPS3,nrtPS1, nrtPS2,nrtPS3) • 使用於有Handoff UGS與Handoff rtPS連線想要進來的時候 • 可以讓nrtPS與rtPS的連線降階,盡量讓提出要求的連線都能進來

  12. Recovery • (UGS,rtPS1, rtPS2,rtPS3, nrtPS1,nrtPS2, nrtPS3) • 使用於有連線要離開的時候 • 盡量把頻寬用完使得Utilization能夠提高

  13. Handoff UGS Connection

  14. New Call UGS Connection

  15. Handoff rtPS Connection

  16. New Call rtPS Connection

  17. Handoff nrtPS Connection

  18. New Call nrtPS Connection

  19. Outline • Introduction • Proposed Bandwidth Guaranteed CAC Scheme • Analytical Model • Numerical Results • Conclusion • Future Work • Reference

  20. Analytical Model • Continuous Time Markov Chain Model • (i, j, k, l, m, p, q) = (UGS, rtPS1, rtPS2, rtPS3, nrtPS1, nrtPS2, nrtPS3)的連線數 • (b1, b2, b3, b4, b5, b6, b7) = (UGS, rtPS1, rtPS2, rtPS3, nrtPS1, nrtPS2, nrtPS3)之可使用的頻寬大小 • Δr= b2 - b3 = b3 – b4 Δn= b5 – b6 = b6 – b7 • (b1, b2, b3, b4, b5, b6, b7)又可表示成 (b1, 3Δr, 2Δr,Δr, 3Δn, 2Δn,Δn) • C = 在BS中可讓連線使用的頻寬總量(Mbps)

  21. Analytical Model(cont.) • Arrival process of the handoff and new call UGS, rtPS, andnrtPS connections is Poisson with λhu, λhr, λhn, λnu, λnr,λnn,andλT =λhu+λhr+λhn+λnu+λnr+λnn • The service time of UGS, rtPS and nrtPS connection are exponentially distributed with mean 1/μu, 1/μr1, 1/μr2, 1/μr3, 1/μn1, 1/μn2, 1/μn3 • steady state prob. of the state s=(i, j, k, l, m, p, q) is represented by π(i, j, k, l, m, p, q)

  22. State Transition Rate of the Markov Chain

  23. State Transition Rate of the Markov Chain(cont.)

  24. Analytical Model • State Space • normalized condition • Bandwidth Utilization(%)

  25. Handoff Connection Dropping Probability • the Prob. of rejecting a handoff connection request for admission into the network.

  26. New Connection Blocking Probability • The Prob. of rejecting a new connection request for admission into the network.

  27. Outline • Introduction • Proposed Bandwidth Guaranteed CAC Scheme • Analytical Model • Numerical Results • Conclusion • Future Work • Reference

  28. System Parameter • total uplink capacity available at BS is 4096Kbps. • QoS Parameter (UGS,rtPS1,rtPS2,rtPS3,nrtPS1,nrtPS2,nrtPS3) =(256,1023,682,341,1023,682,341) • λhu = λnu = λhr= λnr= λhn= λnn • μu=μr1=μr2=μr3= μn1=μn2=μn3=0.2 • system load(ρ)

  29. Admission Control(UGS)

  30. Admission Control(rtPS)

  31. Admission Control(nrtPS)

  32. Utilization

  33. 保留部分頻寬 • recovery時每次只升回部分頻寬,不要每次都把頻寬盡量用完,這樣可以用來微調剩餘的保留頻寬大小,在Utilization與Blocking間微調取得最適合現在網路環境的方法

  34. Outline • Introduction • Proposed Bandwidth Guaranteed CAC Scheme • Analytical Model • Numerical Results • Conclusion • Future Work • Reference

  35. Conclusion • 加入recovery的時候,由於blocking state的steady state prob.變大,所以造成blocking prob.也跟著增加。 • 舉例:如右圖所示。(5,1,2,1,0,0,0)為一個blocking state,在只有降的時候steady-state prob. = 0.0001973118,升+降時是0.001406381,因此可得知在加入升的演算法的時候,跳到blocking state的機率增加,進而造成blocking prob.增加。

  36. Conclusion(cont.) • 只有做degradation的時候,blocking prob.有明顯的改進。 • 除了degradation之外再加上recovery之後,utilization大幅增加。 • 利用調整頻寬保留的比例來決定blocking prob.和utilization的大小,以適用於不同的網路環境。

  37. Future Work • 找出合理的C與合適的R提升系統效能 • 分析當handoff和newcall connection所佔比例不同時的結果。 • 推導rtPS與nrtPS有n個class的general form 。

  38. Reference [1] IEEE Std 802.16-2009, “IEEE Standard for Local and Metropolitan Area Networks Part 16: Air Interface for Broadband Wireless Access Systems,”May, 2009. [2] K. Etemad, “Overview of Mobile WiMAX Technology and Evolution”, IEEE Communications Magazine, vol. 46(10), pp. 31-40, October 2008 [3]  S. Kalikivayi, I.S. Misra, and K. Saha, “Bandwidth and Delay Guaranteed Call Admission Control Scheme for QOS Provisioning in IEEE 802.16e Mobile WiMAX,” IEEE conference on Global telecommunications, pp. 1-6, 2008. [4] KittiWongthavarawat, and Aura Ganz, “Packet scheduling for QoS support in IEEE 802.16 broadband wireless access systems,” International Journal of Communication Systems, vol. 16, issue 1 , pp. 81-96, February 2003

  39. Thanks for yourattention! Q&A

  40. Balance Equation

  41. Balance Equation(cont.) • δ(i,j,k,l,m,p,q) • λtu • λtr • λtn

  42. Comparison(UGS)

  43. Comparison(rtPS)

  44. Comparison(nrtPS)

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