Using the fact that effective wireless range decraise in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense wireless ad …
Using the fact that effective wireless range decreases in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense …
Using the fact that effective wireless range decreases in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense …
Using the fact that effective wireless range decraise in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense wireless ad …
Using the fact that effective wireless range decreases in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense …
Using the fact that effective wireless range decreases in inverse function of local traffic density, we show that a variable traffic density impacts the curvature of paths in a dense …
[引用][C]Geometry of Information Propagation in Massively Dense Ad hoc Networks
P Jacquet - 2004
[引用][C]Geometry of information propagation in massively dense ad hoc networks