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📄 tp-sent-recd.ps

📁 ns2 功率控制仿真代码 The Linux pcmcia-cs package is officially deprecated. It can only be used with 2.4 and
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%!PS-Adobe-2.0%%Title: tp-sent-recd.ps%%Creator: gnuplot 3.7 patchlevel 1%%CreationDate: Fri Oct 10 08:03:36 2003%%DocumentFonts: (atend)%%BoundingBox: 50 50 554 770%%Orientation: Landscape%%Pages: (atend)%%EndComments/gnudict 256 dict defgnudict begin/Color false def/Solid false def/gnulinewidth 5.000 def/userlinewidth gnulinewidth def/vshift -46 def/dl {10 mul} def/hpt_ 31.5 def/vpt_ 31.5 def/hpt hpt_ def/vpt vpt_ def/M {moveto} bind def/L {lineto} bind def/R {rmoveto} bind def/V {rlineto} bind def/vpt2 vpt 2 mul def/hpt2 hpt 2 mul def/Lshow { currentpoint stroke M  0 vshift R show } def/Rshow { currentpoint stroke M  dup stringwidth pop neg vshift R show } def/Cshow { currentpoint stroke M  dup stringwidth pop -2 div vshift R show } def/UP { dup vpt_ mul /vpt exch def hpt_ mul /hpt exch def  /hpt2 hpt 2 mul def /vpt2 vpt 2 mul def } def/DL { Color {setrgbcolor Solid {pop []} if 0 setdash } {pop pop pop Solid {pop []} if 0 setdash} ifelse } def/BL { stroke userlinewidth 2 mul setlinewidth } def/AL { stroke userlinewidth 2 div setlinewidth } def/UL { dup gnulinewidth mul /userlinewidth exch def      10 mul /udl exch def } def/PL { stroke userlinewidth setlinewidth } def/LTb { BL [] 0 0 0 DL } def/LTa { AL [1 udl mul 2 udl mul] 0 setdash 0 0 0 setrgbcolor } def/LT0 { PL [] 1 0 0 DL } def/LT1 { PL [4 dl 2 dl] 0 1 0 DL } def/LT2 { PL [2 dl 3 dl] 0 0 1 DL } def/LT3 { PL [1 dl 1.5 dl] 1 0 1 DL } def/LT4 { PL [5 dl 2 dl 1 dl 2 dl] 0 1 1 DL } def/LT5 { PL [4 dl 3 dl 1 dl 3 dl] 1 1 0 DL } def/LT6 { PL [2 dl 2 dl 2 dl 4 dl] 0 0 0 DL } def/LT7 { PL [2 dl 2 dl 2 dl 2 dl 2 dl 4 dl] 1 0.3 0 DL } def/LT8 { PL [2 dl 2 dl 2 dl 2 dl 2 dl 2 dl 2 dl 4 dl] 0.5 0.5 0.5 DL } def/Pnt { stroke [] 0 setdash   gsave 1 setlinecap M 0 0 V stroke grestore } def/Dia { stroke [] 0 setdash 2 copy vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath stroke  Pnt } def/Pls { stroke [] 0 setdash vpt sub M 0 vpt2 V  currentpoint stroke M  hpt neg vpt neg R hpt2 0 V stroke  } def/Box { stroke [] 0 setdash 2 copy exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V closepath stroke  Pnt } def/Crs { stroke [] 0 setdash exch hpt sub exch vpt add M  hpt2 vpt2 neg V currentpoint stroke M  hpt2 neg 0 R hpt2 vpt2 V stroke } def/TriU { stroke [] 0 setdash 2 copy vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath stroke  Pnt  } def/Star { 2 copy Pls Crs } def/BoxF { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V  hpt2 0 V  0 vpt2 V  hpt2 neg 0 V  closepath fill } def/TriUF { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath fill } def/TriD { stroke [] 0 setdash 2 copy vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath stroke  Pnt  } def/TriDF { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath fill} def/DiaF { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath fill } def/Pent { stroke [] 0 setdash 2 copy gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath stroke grestore Pnt } def/PentF { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath fill grestore } def/Circle { stroke [] 0 setdash 2 copy  hpt 0 360 arc stroke Pnt } def/CircleF { stroke [] 0 setdash hpt 0 360 arc fill } def/C0 { BL [] 0 setdash 2 copy moveto vpt 90 450  arc } bind def/C1 { BL [] 0 setdash 2 copy        moveto       2 copy  vpt 0 90 arc closepath fill               vpt 0 360 arc closepath } bind def/C2 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 90 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C3 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C4 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 180 270 arc closepath fill               vpt 0 360 arc closepath } bind def/C5 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 90 arc       2 copy moveto       2 copy  vpt 180 270 arc closepath fill               vpt 0 360 arc } bind def/C6 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 90 270 arc closepath fill              vpt 0 360 arc closepath } bind def/C7 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 0 270 arc closepath fill              vpt 0 360 arc closepath } bind def/C8 { BL [] 0 setdash 2 copy moveto      2 copy vpt 270 360 arc closepath fill              vpt 0 360 arc closepath } bind def/C9 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 270 450 arc closepath fill              vpt 0 360 arc closepath } bind def/C10 { BL [] 0 setdash 2 copy 2 copy moveto vpt 270 360 arc closepath fill       2 copy moveto       2 copy vpt 90 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C11 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 180 arc closepath fill       2 copy moveto       2 copy  vpt 270 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C12 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 180 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C13 { BL [] 0 setdash  2 copy moveto       2 copy  vpt 0 90 arc closepath fill       2 copy moveto       2 copy  vpt 180 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C14 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 90 360 arc closepath fill               vpt 0 360 arc } bind def/C15 { BL [] 0 setdash 2 copy vpt 0 360 arc closepath fill               vpt 0 360 arc closepath } bind def/Rec   { newpath 4 2 roll moveto 1 index 0 rlineto 0 exch rlineto       neg 0 rlineto closepath } bind def/Square { dup Rec } bind def/Bsquare { vpt sub exch vpt sub exch vpt2 Square } bind def/S0 { BL [] 0 setdash 2 copy moveto 0 vpt rlineto BL Bsquare } bind def/S1 { BL [] 0 setdash 2 copy vpt Square fill Bsquare } bind def/S2 { BL [] 0 setdash 2 copy exch vpt sub exch vpt Square fill Bsquare } bind def/S3 { BL [] 0 setdash 2 copy exch vpt sub exch vpt2 vpt Rec fill Bsquare } bind def/S4 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt Square fill Bsquare } bind def/S5 { BL [] 0 setdash 2 copy 2 copy vpt Square fill       exch vpt sub exch vpt sub vpt Square fill Bsquare } bind def/S6 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt vpt2 Rec fill Bsquare } bind def/S7 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt vpt2 Rec fill       2 copy vpt Square fill       Bsquare } bind def/S8 { BL [] 0 setdash 2 copy vpt sub vpt Square fill Bsquare } bind def/S9 { BL [] 0 setdash 2 copy vpt sub vpt vpt2 Rec fill Bsquare } bind def/S10 { BL [] 0 setdash 2 copy vpt sub vpt Square fill 2 copy exch vpt sub exch vpt Square fill       Bsquare } bind def/S11 { BL [] 0 setdash 2 copy vpt sub vpt Square fill 2 copy exch vpt sub exch vpt2 vpt Rec fill       Bsquare } bind def/S12 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill Bsquare } bind def/S13 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill       2 copy vpt Square fill Bsquare } bind def/S14 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill       2 copy exch vpt sub exch vpt Square fill Bsquare } bind def/S15 { BL [] 0 setdash 2 copy Bsquare fill Bsquare } bind def/D0 { gsave translate 45 rotate 0 0 S0 stroke grestore } bind def/D1 { gsave translate 45 rotate 0 0 S1 stroke grestore } bind def/D2 { gsave translate 45 rotate 0 0 S2 stroke grestore } bind def/D3 { gsave translate 45 rotate 0 0 S3 stroke grestore } bind def/D4 { gsave translate 45 rotate 0 0 S4 stroke grestore } bind def/D5 { gsave translate 45 rotate 0 0 S5 stroke grestore } bind def/D6 { gsave translate 45 rotate 0 0 S6 stroke grestore } bind def/D7 { gsave translate 45 rotate 0 0 S7 stroke grestore } bind def/D8 { gsave translate 45 rotate 0 0 S8 stroke grestore } bind def/D9 { gsave translate 45 rotate 0 0 S9 stroke grestore } bind def/D10 { gsave translate 45 rotate 0 0 S10 stroke grestore } bind def/D11 { gsave translate 45 rotate 0 0 S11 stroke grestore } bind def/D12 { gsave translate 45 rotate 0 0 S12 stroke grestore } bind def/D13 { gsave translate 45 rotate 0 0 S13 stroke grestore } bind def/D14 { gsave translate 45 rotate 0 0 S14 stroke grestore } bind def/D15 { gsave translate 45 rotate 0 0 S15 stroke grestore } bind def/DiaE { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath stroke } def/BoxE { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V closepath stroke } def/TriUE { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath stroke } def/TriDE { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath stroke } def/PentE { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath stroke grestore } def/CircE { stroke [] 0 setdash   hpt 0 360 arc stroke } def/Opaque { gsave closepath 1 setgray fill grestore 0 setgray closepath } def/DiaW { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V Opaque stroke } def/BoxW { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V Opaque stroke } def/TriUW { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V Opaque stroke } def/TriDW { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V Opaque stroke } def/PentW { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  Opaque stroke grestore } def/CircW { stroke [] 0 setdash   hpt 0 360 arc Opaque stroke } def/BoxFill { gsave Rec 1 setgray fill grestore } defend%%EndProlog%%Page: 1 1gnudict begingsave50 50 translate0.100 0.100 scale90 rotate0 -5040 translate0 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ULLTa714 4620 M6248 0 V1.000 ULLTb714 4620 M63 0 V6185 0 R-63 0 V-6269 0 R(2400) Rshow1.000 ULLTa714 420 M0 4200 V1.000 ULLTb714 420 M0 63 V0 4137 R0 -63 V714 280 M(500) Cshow1.000 ULLTa1607 420 M0 3577 V0 560 R0 63 V1.000 ULLTb1607 420 M0 63 V0 4137 R0 -63 V0 -4277 R(1000) Cshow1.000 ULLTa2499 420 M0 3577 V0 560 R0 63 V1.000 ULLTb2499 420 M0 63 V0 4137 R0 -63 V0 -4277 R(1500) Cshow1.000 ULLTa3392 420 M0 4200 V1.000 ULLTb3392 420 M0 63 V0 4137 R0 -63 V0 -4277 R(2000) Cshow1.000 ULLTa4284 420 M0 4200 V1.000 ULLTb4284 420 M0 63 V0 4137 R0 -63 V0 -4277 R(2500) Cshow1.000 ULLTa5177 420 M0 4200 V1.000 ULLTb5177 420 M0 63 V0 4137 R0 -63 V0 -4277 R(3000) Cshow1.000 ULLTa6069 420 M0 4200 V1.000 ULLTb6069 420 M0 63 V0 4137 R0 -63 V0 -4277 R(3500) Cshow1.000 ULLTa6962 420 M0 4200 V1.000 ULLTb6962 420 M0 63 V0 4137 R0 -63 V0 -4277 R(4000) Cshow1.000 ULLTb714 420 M6248 0 V0 4200 V-6248 0 V714 420 L140 2520 Mcurrentpoint gsave translate 90 rotate 0 0 M(Aggregate Received Tput in Kbits/sec) Cshowgrestore3838 70 M(Aggregate sent Tput in Kbits/sec) Cshow3838 4830 M(CBR Recvd thruput vs Sent thruput: 80 nodes in 4 clusters, 20 CBR conns ) Cshow1.000 UP1.000 ULLT02058 4487 M(CLUSTERPOW) Rshow2142 4487 M399 0 V893 770 M357 362 V357 346 V357 316 V357 272 V357 217 V357 126 V357 -40 V714 -192 V5534 1823 L6962 1657 L893 770 Pls1250 1132 Pls1607 1478 Pls1964 1794 Pls2321 2066 Pls2678 2283 Pls3035 2409 Pls3392 2369 Pls4106 2177 Pls5534 1823 Pls6962 1657 Pls2341 4487 Pls1.000 UP1.000 ULLT12058 4347 M(COMPOW) Rshow2142 4347 M399 0 V893 808 M357 372 V357 449 V357 123 V357 251 V357 346 V357 293 V357 130 V714 382 V1428 669 V1428 400 V893 808 Crs1250 1180 Crs1607 1629 Crs1964 1752 Crs2321 2003 Crs2678 2349 Crs3035 2642 Crs3392 2772 Crs4106 3154 Crs5534 3823 Crs6962 4223 Crs2341 4347 Crs1.000 UP1.000 ULLT22058 4207 M(DSDV at power 6) Rshow2142 4207 M399 0 V893 802 M357 427 V357 238 V357 429 V357 147 V357 331 V357 284 V357 173 V714 380 V1428 739 V1428 333 V893 802 Star1250 1229 Star1607 1467 Star1964 1896 Star2321 2043 Star2678 2374 Star3035 2658 Star3392 2831 Star4106 3211 Star5534 3950 Star6962 4283 Star2341 4207 Star1.000 UP1.000 ULLT32058 4067 M(LOADPOW) Rshow2142 4067 M399 0 V1250 928 M357 255 V357 204 V357 234 V357 137 V357 107 V357 70 V357 65 V357 120 V1071 134 V357 90 V1428 45 V1250 928 Box1607 1183 Box1964 1387 Box2321 1621 Box2678 1758 Box3035 1865 Box3392 1935 Box3749 2000 Box4106 2120 Box5177 2254 Box5534 2344 Box6962 2389 Box2341 4067 Boxstrokegrestoreendshowpage%%Trailer%%DocumentFonts: Helvetica%%Pages: 1

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