Abstract:
We present Greedy Perimeter Stateless Routing (GPSR), a novel routing protocol for wireless datagram networks that uses the positions of routers and a packet's destination to make packet forwarding decisions. GPSR makes greedy forwarding decisions using only information about a router's immediate neighbors in the network topology. When a packet reaches a region where greedy forwarding is impossible, the algorithm recovers by routing around the perimeter of the region. By keeping state only about the local topology, GPSR scales better in per-router state than shortest-path and ad-hoc routing protocols as the number of network destinations increases. Under mobility's frequent topology changes, GPSR can use local topology information to find correct new routes quickly. We describe the GPSR protocol, and use extensive simulation of mobile wireless networks to compare its performance with that of Dynamic Source Routing. Our simulations demonstrate GPSR's scalability on densely deployed wir...
Citations
|
1505
|
Dynamic Source Routing in Ad Hoc Wireless Networks
– Johnson, Maltz
- 1996
|
|
976
|
A performance comparison of multi-hop wireless ad hoc network routing protocols
– Broch, Maltz, et al.
- 1998
|
|
665
|
A highly adaptive distributed routing algorithm for mobile wireless networks
– PARK, CORSON
- 1997
|
|
630
|
End-to-end arguments in system design
– SALTZER, REED, et al.
- 1984
|
|
428
|
A scalable location service for geographic ad-hoc routing
– LI, JANNOTTI, et al.
- 2000
|
|
411
|
Routing with guaranteed delivery in ad hoc wireless networks
– BOSE, MORIN, et al.
- 1999
|
|
408
|
MACA - a new channel access method for packet radio
– Karn
- 1990
|
|
346
|
Ad hoc on demand distance vector (AODV) routing. Internet Draft
– PERKINS
- 1997
|
|
270
|
A new location technique for the active office
– WARD, JONES, et al.
- 1997
|
|
247
|
The Aloha System - Another Alternative for Computer Communications
– Abramson
- 1970
|
|
180
|
The synchronization of periodic routing messages
– FLOYD, JACOBOSON
- 1994
|
|
177
|
A new statistical approach to geographic variation analysis. Systematic Zoology 18
– GABRIEL, SOKAL
- 1969
|
|
174
|
The performance of query control schemes for the zone routing protocol
– Haas, Pearlman
- 1998
|
|
173
|
The relative neighborhood graph of a finite planar set
– TOUSSAINT
- 1980
|
|
168
|
Routing and addressing problems in large metropolitan-scale internetworks
– FINN
- 1987
|
|
154
|
Mobile networking for smart dust
– KAHN, KATZ, et al.
- 1999
|
|
92
|
The effects of on-demand behavior in routing protocols for multihop wireless ad hoc networks
– MALTZ, BROCH, et al.
- 1999
|
|
91
|
A channel access scheme for large dense packet radio networks
– SHEPARD
- 1996
|
|
67
|
IEEE 802.11 wireless LAN: capacity analysis and protocol enhancement
– CALI, CONTI, et al.
- 1998
|
|
46
|
Location-aided routing in mobile ad hoc networks
– Ko, Vaidya
- 1998
|
|
44
|
Design considerations for distributed microsensor systems
– CHANDRAKASAN, AMIRTHARAJAH, et al.
- 1999
|
|
16
|
The UCB/LBNL/VINT Network Simulator—ns (version 2). http://mash.cs.berkeley.edu/ns
– PROJECT
|
|
16
|
Dynamics of distributed shortest-path routing algorithms
– ZAUMEN, ACEVES, et al.
- 1991
|
|
9
|
Wireless and Mobility Extensions to ns-2. http://www.monarch.cs.cmu.edu/cmu-ns.html
– GROUP
- 1999
|
|
8
|
Highly-dynamic destination-sequenced distance-vector routing (DSDV) for mobile computers
– PERKINS, BHAGWAT
- 1994
|
|
7
|
Greedy perimeter state routing. Invited Seminar at the USC/Information Sciences Institute
– KARP
- 1998
|
|
2
|
Geographic routing for wireless networks. Presentation at
– KARP
- 1998
|