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Lakshmi Anantharamu

Publications and source records attributed to Lakshmi Anantharamu.

3 recordsLinked to original sources

Adversarial Multiple Access Channels with Individual Injection Rates

We study deterministic distributed broadcasting in synchronous multiple-access channels. Packets are injected into $n$ nodes by a window-type adversary that is constrained by a window $w$ and injection rates individually assigned to all nodes. We investigate what queue size and packet latency can be achieved with the maximum aggregate injection rate of one packet per round, depending on properties of channels and algorithms. We give a non-adaptive algorithm for channels with collision detection and an adaptive algorithm for channels without collision detection that achieve $O(\min(n+w,w\log n))$ packet latency. We show that packet latency has to be either $Ω(w \max (1,\log_w n))$, when $w\le n$, or $Ω(w+n)$, when $w>n$, as a matching lower bound to these algorithms. We develop a non-adaptive algorithm for channels without collision detection that achieves $O(n+w)$ queue size and $O(nw)$ packet latency. This is in contrast with the adversarial model of global injection rates, in which non-adaptive algorithms with bounded packet latency do not exist (Chlebus et al. Distributed Computing 22(2): 93 - 116, 2009). Our algorithm avoids collisions produced by simultaneous transmissions; we show that any algorithm with this property must have $Ω(nw)$ packet latency.

cs.DC

Broadcasting in Ad Hoc Multiple Access Channels

We study broadcast in multiple access channels in dynamic adversarial settings. There is an unbounded supply of anonymous stations attached to a synchronous channel. There is an adversary who injects packets into stations to be broadcast on the channel. The adversary is restricted by injection rate, burstiness, and by how many passive stations can be simultaneously activated by providing them with packets. We consider deterministic distributed broadcast algorithms, which are further categorized by their properties. We investigate for which injection rates can algorithms attain bounded packet latency, when adversaries are restricted to be able to activate at most one station per round. The rates of algorithms we present make the increasing sequence consisting of $\frac{1}{3}$, $\frac{3}{8}$ and $\frac{1}{2}$, reflecting the additional features of algorithms. We show that injection rate $\frac{3}{4}$ cannot be handled with bounded packet latency.

cs.NI

Packet Latency of Deterministic Broadcasting in Adversarial Multiple Access Channels

We study broadcasting in multiple access channels with dynamic packet arrivals and jamming. Communication environments are represented by adversarial models that specify constraints on packet arrivals and jamming. We consider deterministic distributed broadcast algorithms and give upper bounds on the worst-case packet latency and the number of queued packets in relation to the parameters defining adversaries. Packet arrivals are determined by a rate of injections and a number of packets that can be generated in one round. Jamming is constrained by a rate with which an adversary can jam rounds and by a number of consecutive rounds that can be jammed.

cs.DC