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  2. bc98_crc_with_ref.dvi

    https://www.statslab.cam.ac.uk/~rrw1/publications/Courcoubetis%20-%20Kelly%20-%20Siris%20-%20Weber%201998%20A%20Study%20of%20simple%20usage-based%20charging%20schemes%20for%20broadband%20networks.pdf
    15 Sep 2011: peak/mean boundsimple bound. inverted T. (a) B = 0:25 106 bytes 00.10.20.30.4. ... 0020.00300.20.4.
  3. CHAPTER 13 MONOTONE OPTIMAL POLICIES FOR LEFT-SKIP-FREE MARKOV…

    https://www.statslab.cam.ac.uk/~rrw1/publications/Stidham%20-%20Weber%201999%20Monotone%20optimal%20policies%20for%20left-skip-free%20Markov%20decision%20processes.pdf
    18 Sep 2011: i'"ol1o(ol1e Optinzal Policies for Leji-Skip-F1'ee Alarkov Decision Processes 20! 10 siTnplify thcse expressions, assume (without loss of gencrality) that the tiTllC unit has been chosen so
  4. Minimizing Expected Makespans on Uniform Processor Systems

    https://www.statslab.cam.ac.uk/~rrw1/publications/Coffman%20Garey%20Flatto%20Weber%201987%20Minimizing%20expected%20makespan%20on%20uniform%20processor%20systems.pdf
    18 Sep 2011: 3.20) C2(a, k) = C( Ey, k - 1) = E(k - E1 E). ... inequality holding if (El, k) is strongly stable. Clearly, (3.19), (3.20) and (3.22) jointly imply that C(a, k) = Cl(a, k) = E(k 1,.
  5. p2pw6.dvi

    https://www.statslab.cam.ac.uk/~rrw1/publications/Antoniadis%20-%20Courcoubetis%20-%20Weber%202004%20An%20Asymptotically%20Optimal%20Scheme%20for%20P2P%20File%20Sharing.pdf
    15 Nov 2011: 1. 2.5. 7.5. 12.5. 17.5. 20. 15. 10. Figure 2: Welfare gain of dial-up (group A) and DSL(group B) users when forming groups in which
  6. Preprint 0 (2000) 1{22 1Telecommunication Systems, 15(3-4):323-343,…

    https://www.statslab.cam.ac.uk/~rrw1/publications/Courcoubetis%20-%20Kelly%20-%20Siris%20-%20Weber%202000%20A%20study%20of%20simple%20charging%20schemes%20for%20broadband%20networks.pdf
    15 Sep 2011: 0.2. 0.25. 0.3. 0.35. 0.4. 0.45. 0.5. 0 10 20 30 40 50 60 70 80. ... 20. 0.45. 0.5. 0.55. 0.6. 0.65. 0.7. 0.75. 0.8. 0.85. 0.9.
  7. LiuWeberZhao11CDC_revised.dvi

    https://www.statslab.cam.ac.uk/~rrw1/publications/Liu%20-%20Weber%20-%20Zhao%202011%20Indexability%20and%20Whittle%20Index%20for%20restless%20bandit%20problems%20involving%20reset%20processes.pdf
    31 Oct 2011: Rw = K. (. 1 1. E[L]. ). , (20). where E[L] is the average length of the active period overthe infinite time horizon and all arms. ... To bound the throughput Rw, it is equivalent to bound theaverage length of the transmission period E[L] as shown
  8. Markov Chains, Computer Proofs, andAverage-Case Analysis of Best Fit…

    https://www.statslab.cam.ac.uk/~rrw1/publications/Coffman%20-%20Johnson%20-%20Shor%20-%20Weber%201993%20Markov%20chains,%20computer%20proofs,%20and%20average-case%20analysis%20of%20best%20fit%20bin%20packing.pdf
    15 Sep 2011: c) there exist constants c,d 20 such that. IIsll s c$(s)dforalls e S,. ... The following iseasy to verify. Lemma 3.1. (i) IfK = 2r+ lor some integer r 20, thenn@ = x;=(tl)i.
  9. 1034 IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, VOL. ...

    https://www.statslab.cam.ac.uk/~rrw1/publications/Courcoubetis%20-%20Weber%202006%20%20Incentives%20for%20large%20peer-to-peer%20systems.pdf
    15 Sep 2011: 20). Suppose that each peer incurs a cost that is proportional to thenumber of files he contributes.
  10. paper3.dvi

    https://www.statslab.cam.ac.uk/~rrw1/publications/Courcoubetis%20-%20Kelly%20-%20Weber%202000%20Measurement%20based%20charging%20in%20communication%20networks.pdf
    15 Sep 2011: in the eective bandwidths are small as thetrac mix varies by 10-20%, whereas for small links the eect cannot be ignored. ... Pt1 xi=x p(x1;x2; : : : ;xt): (20)Then (m;h) = (1=st)log Y where Y is the optimal value attained in the linear programmaximize Xx
  11. Z:/helmut/Projekte/JUCS_2008/accepted_papers/Soursos/source_files/sour…

    https://www.statslab.cam.ac.uk/~rrw1/publications/Souros%20-%20Courcoubetis%20-Weber%202008%20Dynamic%20bandwidth%20pricing%20Provision%20cost%20market%20size%20effective%20bandwidths%20and%20price%20games.pdf
    15 Sep 2011: Figure 5 depicts how the equilibrium point moves as the provision unit costincreases, for a small market (n = 20). ... c) c = 0.4 (d) c = 0.5. Figure 5: The reaction curves for the providers of static(blue) and dy-namic(violet) providers, as c increases

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