2009 |
86 | EE | Supranamaya Ranjan,
Ram Swaminathan,
Mustafa Uysal,
Antonio Nucci,
Edward W. Knightly:
DDoS-shield: DDoS-resilient scheduling to counter application layer attacks.
IEEE/ACM Trans. Netw. 17(1): 26-39 (2009) |
2008 |
85 | EE | Joshua Robinson,
Mustafa Uysal,
Ram Swaminathan,
Edward W. Knightly:
Adding Capacity Points to a Wireless Mesh Network Using Local Search.
INFOCOM 2008: 1247-1255 |
84 | EE | Jingpu Shi,
Omer Gurewitz,
Vincenzo Mancuso,
Joseph Camp,
Edward W. Knightly:
Measurement and Modeling of the Origins of Starvation in Congestion Controlled Mesh Networks.
INFOCOM 2008: 1633-1641 |
83 | EE | Joseph Camp,
Vincenzo Mancuso,
Omer Gurewitz,
Edward W. Knightly:
A Measurement Study of Multiplicative Overhead Effects in Wireless Networks.
INFOCOM 2008: 76-80 |
82 | EE | Ehsan Aryafar,
Omer Gurewitz,
Edward W. Knightly:
Distance-1 Constrained Channel Assignment in Single Radio Wireless Mesh Networks.
INFOCOM 2008: 762-770 |
81 | EE | Joshua Paul Robinson,
Ram Swaminathan,
Edward W. Knightly:
Assessment of urban-scale wireless networks with a small number of measurements.
MOBICOM 2008: 187-198 |
80 | EE | Joseph Camp,
Edward W. Knightly:
Modulation rate adaptation in urban and vehicular environments: cross-layer implementation and experimental evaluation.
MOBICOM 2008: 315-326 |
79 | EE | Anastasios Giannoulis,
Marco Fiore,
Edward W. Knightly:
Supporting vehicular mobility in urban multi-hop wireless networks.
MobiSys 2008: 54-66 |
78 | EE | Supranamaya Ranjan,
Edward W. Knightly:
High performance distributed Denial-of-Service resilient web cluster architecture.
NOMS 2008: 1019-1024 |
77 | EE | Anastasios Giannoulis,
Theodoros Salonidis,
Edward W. Knightly:
Congestion Control and Channel Assignment in Multi-Radio Wireless Mesh Networks.
SECON 2008: 350-358 |
76 | EE | Supranamaya Ranjan,
Edward W. Knightly:
High-Performance Resource Allocation and Request Redirection Algorithms for Web Clusters.
IEEE Trans. Parallel Distrib. Syst. 19(9): 1186-1200 (2008) |
75 | EE | Imad Aad,
Jean-Pierre Hubaux,
Edward W. Knightly:
Impact of denial of service attacks on ad hoc networks.
IEEE/ACM Trans. Netw. 16(4): 791-802 (2008) |
74 | EE | Michele Garetto,
Theodoros Salonidis,
Edward W. Knightly:
Modeling per-flow throughput and capturing starvation in CSMA multi-hop wireless networks.
IEEE/ACM Trans. Netw. 16(4): 864-877 (2008) |
2007 |
73 | | Edward W. Knightly,
Gaetano Borriello,
Ramón Cáceres:
Proceedings of the 5th International Conference on Mobile Systems, Applications, and Services (MobiSys 2007), San Juan, Puerto Rico, June 11-13, 2007
ACM 2007 |
72 | EE | Theodoros Salonidis,
Michele Garetto,
A. Saha,
Edward W. Knightly:
Identifying High Throughput Paths in 802.11 Mesh Networks: a Model-based Approach.
ICNP 2007: 21-30 |
71 | EE | Alexandre de Baynast,
Omer Gurewitz,
Edward W. Knightly:
Cooperative Strategies and Optimal Scheduling for Tree Networks.
INFOCOM 2007: 1857-1865 |
70 | EE | Joshua Robinson,
Edward W. Knightly:
A Performance Study of Deployment Factors in Wireless Mesh Networks.
INFOCOM 2007: 2054-2062 |
69 | EE | Abdul Kader Kabbani,
Theodoros Salonidis,
Edward W. Knightly:
Distributed Low-Complexity Maximum-Throughput Scheduling for Wireless Backhaul Networks.
INFOCOM 2007: 2063-2071 |
68 | EE | Xudong Wang,
Edward W. Knightly,
Marco Conti,
Anthony Ephremides:
A Special Issue on "Wireless Mesh Networks".
Ad Hoc Networks 5(6): 649-651 (2007) |
67 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
Receiver-centric congestion control with a misbehaving receiver: Vulnerabilities and end-point solutions.
Computer Networks 51(10): 2717-2737 (2007) |
66 | EE | Omer Gurewitz,
Alexandre de Baynast,
Edward W. Knightly:
Cooperative Strategies and Achievable Rate for Tree Networks With Optimal Spatial Reuse.
IEEE Transactions on Information Theory 53(10): 3596-3614 (2007) |
65 | EE | Ashutosh Sabharwal,
Ahmad Khoshnevis,
Edward W. Knightly:
Opportunistic spectral usage: bounds and a multi-band CSMA/CA protocol.
IEEE/ACM Trans. Netw. 15(3): 533-545 (2007) |
2006 |
64 | EE | Supranamaya Ranjan,
Ram Swaminathan,
Mustafa Uysal,
Edward W. Knightly:
DDoS-Resilient Scheduling to Counter Application Layer Attacks Under Imperfect Detection.
INFOCOM 2006 |
63 | EE | Michele Garetto,
Theodoros Salonidis,
Edward W. Knightly:
Modeling Per-Flow Throughput and Capturing Starvation in CSMA Multi-Hop Wireless Networks.
INFOCOM 2006 |
62 | EE | Edward W. Knightly:
Large-Scale Urban Mesh Networks: from Deployment to Applications.
LCN 2006 |
61 | EE | Jingpu Shi,
Theodoros Salonidis,
Edward W. Knightly:
Starvation mitigation through multi-channel coordination in CSMA multi-hop wireless networks.
MobiHoc 2006: 214-225 |
60 | EE | Joseph Camp,
Joshua Robinson,
Christopher Steger,
Edward W. Knightly:
Measurement driven deployment of a two-tier urban mesh access network.
MobiSys 2006: 96-109 |
59 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
Low-rate TCP-targeted denial of service attacks and counter strategies.
IEEE/ACM Trans. Netw. 14(4): 683-696 (2006) |
58 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
TCP-LP: low-priority service via end-point congestion control.
IEEE/ACM Trans. Netw. 14(4): 739-752 (2006) |
2005 |
57 | EE | Edward W. Knightly,
Kia Makki:
Message from the technical program co-chairs.
INFOCOM 2005 |
56 | EE | Michele Garetto,
Jingpu Shi,
Edward W. Knightly:
Modeling media access in embedded two-flow topologies of multi-hop wireless networks.
MOBICOM 2005: 200-214 |
55 | EE | Dan Dumitriu,
Edward W. Knightly,
Aleksandar Kuzmanovic,
Ion Stoica,
Willy Zwaenepoel:
Denial-of-service resilience in peer-to-peer file sharing systems.
SIGMETRICS 2005: 38-49 |
54 | EE | Chengzhi Li,
Edward W. Knightly:
Schedulability criterion and performance analysis of coordinated schedulers.
IEEE/ACM Trans. Netw. 13(2): 276-287 (2005) |
53 | EE | Bahareh Sadeghi,
Vikram Kanodia,
Ashutosh Sabharwal,
Edward W. Knightly:
OAR: An Opportunistic Auto-Rate Media Access Protocol for Ad Hoc Networks.
Wireless Networks 11(1-2): 39-53 (2005) |
2004 |
52 | EE | Vikram Kanodia,
Ashutosh Sabharwal,
Edward W. Knightly:
MOAR: A Multi-Channel Opportunistic Auto-Rate Media Access Protocol for Ad Hoc Networks.
BROADNETS 2004: 600-610 |
51 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
A Performance vs. Trust Perspective in the Design of End-Point Congestion Control Protocols.
ICNP 2004: 96-107 |
50 | EE | Coskun Cetinkaya,
Edward W. Knightly:
Opportunistic Traffic Scheduling Over Multiple Network Paths.
INFOCOM 2004 |
49 | EE | Supranamaya Ranjan,
Roger Karrer,
Edward W. Knightly:
Wide Area Redirection of Dynamic Content by Internet Data Centers.
INFOCOM 2004 |
48 | EE | Imad Aad,
Jean-Pierre Hubaux,
Edward W. Knightly:
Denial of service resilience in ad hoc networks.
MOBICOM 2004: 202-215 |
47 | EE | Violeta Gambiroza,
Bahareh Sadeghi,
Edward W. Knightly:
End-to-end performance and fairness in multihop wireless backhaul networks.
MOBICOM 2004: 287-301 |
46 | EE | Roger Karrer,
Ashutosh Sabharwal,
Edward W. Knightly:
Enabling large-scale wireless broadband: the case for TAPs.
Computer Communication Review 34(1): 27-32 (2004) |
45 | EE | Ping Yuan,
Violeta Gambiroza,
Edward W. Knightly:
The IEEE 802.17 media access protocol for high-speed metropolitan-area resilient packet rings.
IEEE Network 18(3): 8-15 (2004) |
44 | EE | Violeta Gambiroza,
Ping Yuan,
Laura Balzano,
Yonghe Liu,
Steve Sheafor,
Edward W. Knightly:
Design, analysis, and implementation of DVSR: a fair high-performance protocol for packet rings.
IEEE/ACM Trans. Netw. 12(1): 85-102 (2004) |
2003 |
43 | EE | Yonghe Liu,
Edward W. Knightly:
Opportunistic Fair Scheduling over Multiple Wireless Channels.
INFOCOM 2003 |
42 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
TCP-LP: A Distributed Algorithm for Low Priority Data Transfer.
INFOCOM 2003 |
41 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
Low-rate TCP-targeted denial of service attacks: the shrew vs. the mice and elephants.
SIGCOMM 2003: 75-86 |
40 | EE | Vikram Kanodia,
Edward W. Knightly:
Ensuring Latency Targets in Multiclass Web Servers.
IEEE Trans. Parallel Distrib. Syst. 14(1): 84-93 (2003) |
39 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
Measurement-Based Characterization and Classification of QoS-Enhanced Systems.
IEEE Trans. Parallel Distrib. Syst. 14(7): 671-685 (2003) |
38 | EE | Huirong Fu,
Edward W. Knightly:
A simple model of real-time flow aggregation.
IEEE/ACM Trans. Netw. 11(3): 422-435 (2003) |
37 | | Bahareh Sadeghi,
Edward W. Knightly:
Architecture and Algorithms for Scalable Mobile QoS.
Wireless Networks 9(1): 7-20 (2003) |
2002 |
36 | | John Wroclawski,
Christophe Diot,
Christian Huitema,
Edward W. Knightly:
QoS Research in a Complicated World.
INFOCOM 2002 |
35 | EE | Bahareh Sadeghi,
Vikram Kanodia,
Ashutosh Sabharwal,
Edward W. Knightly:
Opportunistic media sccess for multirate ad hoc networks.
MOBICOM 2002: 24-35 |
34 | EE | Vikram Kanodia,
Ashutosh Sabharwal,
Bahareh Sadeghi,
Edward W. Knightly:
Ordered packet scheduling in wireless ad hoc networks: mechanisms and performance analysis.
MobiHoc 2002: 58-70 |
33 | EE | Susana Sargento,
Roger Salgado,
Miguel Carmo,
Victor Marques,
Rui Valadas,
Edward W. Knightly:
An Experimental Study of Probing-Based Admission Control for DiffServ Architectures.
NETWORKING 2002: 49-61 |
32 | EE | Laura Balzano,
Violeta Gambiroza,
Yonghe Liu,
Ping Yuan,
Edward W. Knightly,
Steve Sheafor:
DVSR: a high-performance metro ring protocol.
Computer Communication Review 32(3): 29 (2002) |
31 | EE | Chengzhi Li,
Edward W. Knightly:
Coordinated multihop scheduling: a framework for end-to-end services.
IEEE/ACM Trans. Netw. 10(6): 776-789 (2002) |
30 | | Vikram Kanodia,
Chengzhi Li,
Ashutosh Sabharwal,
Bahareh Sadeghi,
Edward W. Knightly:
Distributed Priority Scheduling and Medium Access in Ad Hoc Networks.
Wireless Networks 8(5): 455-466 (2002) |
2001 |
29 | EE | Aleksandar Kuzmanovic,
Edward W. Knightly:
Measuring Service in Multi-Class Networks.
INFOCOM 2001: 1281-1289 |
28 | EE | Susana Sargento,
Rui Valadas,
Edward W. Knightly:
Resource Stealing in Endpoint Controlled Multi-class Networks.
IWDC 2001: 195-211 |
27 | EE | Huirong Fu,
Edward W. Knightly:
Aggregation and Scalable QoS: A Performance Study.
IWQoS 2001: 307-324 |
26 | EE | Vikram Kanodia,
Chengzhi Li,
Ashutosh Sabharwal,
Bahareh Sadeghi,
Edward W. Knightly:
Distributed multi-hop scheduling and medium access with delay and throughput constraints.
MOBICOM 2001: 200-209 |
25 | EE | Julie Schlembach,
Anders Skoe,
Ping Yuan,
Edward W. Knightly:
Design and Implementation of Scalable Admission Control.
QoS-IP 2001: 1-16 |
24 | EE | Ping Yuan,
Julie Schlembach,
Anders Skoe,
Edward W. Knightly:
Design and implementation of scalable edge-based admission control.
Computer Networks 37(5): 507-518 (2001) |
23 | | Coskun Cetinkaya,
Vikram Kanodia,
Edward W. Knightly:
Scalable Services via Egress Admission Control.
IEEE Transactions on Multimedia 3(1): 69-81 (2001) |
22 | EE | Jingyu Qiu,
Edward W. Knightly:
Measurement-based admission control with aggregate traffic envelopes.
IEEE/ACM Trans. Netw. 9(2): 199-210 (2001) |
2000 |
21 | EE | Chengzhi Li,
Edward W. Knightly:
Coordinated Network Scheduling: A Framework for End-to-End Services.
ICNP 2000: 69- |
20 | EE | Coskun Cetinkaya,
Edward W. Knightly:
Egress Admission Control.
INFOCOM 2000: 1471-1480 |
19 | EE | Lee Breslau,
Edward W. Knightly,
Scott Shenker,
Ion Stoica,
Hui Zhang:
Endpoint admission control: Architectural issues and performance.
SIGCOMM 2000: 57-69 |
18 | EE | Tao Wu,
Edward W. Knightly:
Enforceable and efficient service provisioning.
Computer Communications 23(14-15): 1377-1388 (2000) |
1999 |
17 | | Rahul Jain,
Edward W. Knightly:
A Framework for Design & Evaluation of Admission Control Algorithms in Multi-Service Mobile Networks.
INFOCOM 1999: 1027-1035 |
16 | | Jingyu Qiu,
Edward W. Knightly:
Inter-Class Resource Sharing using Statistical Service Envelopes.
INFOCOM 1999: 1404-1411 |
15 | EE | Rahul Jain,
Bahareh Sadeghi,
Edward W. Knightly:
Towards Coarse-Grained Mobile QoS.
WOWMOM 1999: 109-116 |
14 | EE | Edward W. Knightly:
Resource Allocation for Multimedia Traffic Flows Using Rate Variance Envelopes.
Multimedia Syst. 7(6): 477-485 (1999) |
1998 |
13 | | Edward W. Knightly:
Enforceable Quality of Service Guarantees for Bursty Traffic Streams.
INFOCOM 1998: 635-642 |
1997 |
12 | | Edward W. Knightly:
Second Moment Resource Allocation in Multi-Service Networks.
SIGMETRICS 1997: 181-191 |
11 | EE | Edward W. Knightly,
Paola Rossaro:
On the effects of smoothing for deterministic QoS.
Distributed Systems Engineering 4(1): 3-15 (1997) |
10 | EE | Edward W. Knightly,
Hui Zhang:
D-BIND: an accurate traffic model for providing QoS guarantees to VBR traffic.
IEEE/ACM Trans. Netw. 5(2): 219-231 (1997) |
9 | | Hui Zhang,
Edward W. Knightly:
RED-VBR: A Renegotiation-Based Approach to Support Delay-Sensitive VBR Video.
Multimedia Syst. 5(3): 164-176 (1997) |
1996 |
8 | | Edward W. Knightly:
H-BIND: A New Approach to Providing Statistical Performance Guarantees to VBR Traffic.
INFOCOM 1996: 1091-1099 |
7 | EE | Dallas E. Wrege,
Edward W. Knightly,
Hui Zhang,
Jörg Liebeherr:
Deterministic delay bounds for VBR video in packet-switching networks: fundamental limits and practical trade-offs.
IEEE/ACM Trans. Netw. 4(3): 352-362 (1996) |
6 | | Hui Zhang,
Edward W. Knightly:
RCSP and Stop-and-Go: A Comparison of Two Non-Work-Conserving Disciplines for Supporting Multimedia Communication.
Multimedia Syst. 4(6): 346-356 (1996) |
1995 |
5 | | Edward W. Knightly,
Hui Zhang:
Traffic Characterization and Switch Utilization Using a Deterministic Bounding Interval Dependent Traffic Model.
INFOCOM 1995: 1137-1145 |
4 | | Hui Zhang,
Edward W. Knightly:
RED-VBR: A New Approach to Support Delay-Sensitive VBR Video in Packet-Switched Networks.
NOSSDAV 1995: 258-272 |
3 | | Edward W. Knightly,
Dallas E. Wrege,
Jörg Liebeherr,
Hui Zhang:
Fundamental Limits and Tradeoffs of Providing Deterministic Guarantees to VBR Video Traffic.
SIGMETRICS 1995: 98-107 |
1994 |
2 | | Anindo Banerjea,
Edward W. Knightly,
Fred Templin,
Hui Zhang:
Experiments with the Tenet Real-Time Protocol Suite on the Sequoia 2000 Wide Area Network.
ACM Multimedia 1994: 183-191 |
1 | | Hui Zhang,
Edward W. Knightly:
Providing End-to-End Statistical Performance Guarantees with Bounding Interval Dependent Stochastic Models.
SIGMETRICS 1994: 211-220 |