Lune

STOC2025Top-tier venue

Simple and Optimal Algorithms for Heavy Hitters and Frequency Moments in Distributed Models

Zengfeng Huang, Zhongzheng Xiong, Xiaoyi Zhu, Zhewei Wei

2025Year
1Citations

Abstract

We consider the problems of distributed heavy hitters and frequency moments in both the coordinator model and the distributed tracking model (also known as the distributed functional monitoring model). We present simple and optimal (up to logarithmic factors) algorithms for ℓ p heavy hitters and F p estimation (p ≥ 2) in these distributed models. For ℓ p heavy hitters in the coordinator model, our algorithm requires only one round and uses Õ(k p-1 /ε p ) bits of communication. For p > 2, this is the first near-optimal result. By combining our algorithm with the standard recursive sketching technique, we obtain a near-optimal two-round algorithm for F p in the coordinator model, matching a significant result from recent work by Esfandiari et al. (STOC 2024). Our algorithm and analysis are much simpler and have better costs with respect to logarithmic factors. Furthermore, our technique provides a one-round algorithm for F p , which is a significant improvement over a result of Woodruff and Zhang (STOC 2012). Thanks to the simplicity of our heavy hitter algorithms, we manage to adapt them to the distributed tracking model with only a polylog(n) increase in communication. For ℓ p heavy hitters, our algorithm has a communication cost of Õ(k p-1 /ε p ), representing the first near-optimal algorithm for all p ≥ 2. By applying the recursive sketching technique, we also provide the first near-optimal algorithm for F p in the distributed tracking model, with a communication cost of Õ(k p-1 /ε 2 ) for all p ≥ 2. Even for F 2 , our result improves upon the bounds established by Cormode, Muthukrishnan, and Yi (SODA 2008) and Woodruff and Zhang (STOC 2012), nearly matching the existing lower bound for the first time. 1 We use Õ to suppress polylog(n) factors, and we treat p as a constant, as in previous work.

Ask about this paper

Your agent reads all of it.

Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.

Questions to start from

Your agent calls

Luneget_paper_fulltext

Ask in Lune

Free to start. No credit card required.

lune papers fulltext cd5ce732-7aaf-49ca-b716-db9e39aa5f37

Builds on3

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines