Wilton Kim

dblp:329/4381 · DBLP profile ↗
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7ranked-venue papers
4as first author
7since 2021 · last 2026
0009-0004-7253-4594ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Applied, interdisciplinary, general and emerging computing · 4 · 2 first-author · 4 since 2021Theory of computation · 2 · 1 first-author · 2 since 2021Security and privacy · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Trace Repair Never Loses to Classical Repair
Wilton Kim, Stanislav Kruglik, Han Mao Kiah
ISIT1
2024 Decoding Sparse Reed-Solomon Codes with Known Support
abstract
Motivated by the use of trace codes in low-bandwidth repair, we investigate the decoding of a Reed-Solomon subcode whose information polynomials are characterized by a known sparse support. We ask: Can we correct more errors by leveraging the known structure of the information polynomial? We affirmatively respond to this query by introducing two schemes designed to complement any Reed-Solomon decoder. Our findings demonstrate better error-correcting capabilities than the naive way to decode based on the maximum degree of the information polynomial.
Wilton Kim, Joel Nathanael Raj, Stanislav Kruglik, Han Mao Kiah
ISIT1
2024 Verifiable Coded Computation of Multiple Functions
abstract
We consider the problem of evaluating distinct multivariate polynomials over several massive datasets in a distributed computing system with a single master node and multiple worker nodes. We focus on the general case when each multivariate polynomial is evaluated over its corresponding dataset and propose a generalization of the Lagrange Coded Computing framework (Yu et al., 2019) to perform all computations simultaneously while providing robustness against stragglers who do not respond in time, adversarial workers who respond with wrong computation and information-theoretic security of dataset against colluding workers. Our scheme introduces a small computation overhead which results in a reduction in download cost and also offers comparable resistance to stragglers over existing solutions. On top of it, we also propose two verification schemes to detect the presence of adversaries, which leads to incorrect results, without involving additional nodes.
Wilton Kim, Stanislav Kruglik, Han Mao Kiah
IEEE Trans. Inf. Forensics Secur.1
2024 Explicit Low-Bandwidth Evaluation Schemes for Weighted Sums of Reed-Solomon-Coded Symbols
abstract
Motivated by applications in distributed storage, distributed computing, and homomorphic secret sharing, we study communication-efficient schemes for computing linear combinations of coded symbols. Specifically, we design low-bandwidth schemes that evaluate the weighted sum of ℓ coded symbols in a codewordc∈ Fn, when we are given access todof the remaining components inc. Formally, suppose that F is a field extension of B of degreet. Letcbe a codeword in a Reed-Solomon code of dimensionkand our task is to compute the weighted sum of ℓ coded symbols. In this paper, for somest, we provide an explicit scheme that performs this task by downloadingd(t-s) sub-symbols in B fromdavailable nodes, wheneverd≥ ℓ|B|s-ℓ +k. In many cases, our scheme outperforms previous schemes in the literature. Furthermore, we provide a characterization of evaluation schemes for general linear codes. Then in the special case of Reed-Solomon codes, we use this characterization to derive a lower bound for the evaluation bandwidth.
Han Mao Kiah, Wilton Kim, Stanislav Kruglik, San Ling, Huaxiong Wang
IEEE Trans. Inf. Theory2
2023 Explicit Low-Bandwidth Evaluation Schemes for Weighted Sums of Reed-Solomon-Coded Symbols
abstract
Motivated by applications in distributed storage, distributed computing, and homomorphic secret sharing, we study communication-efficient schemes for computing linear combinations of coded symbols. Specifically, we design low-bandwidth schemes that evaluate the weighted sum of ℓ coded symbols in a codeword ${\mathbf{c}} \in {\mathbb{F}^n}$, when we are given access to d of the remaining components in c. Formally, suppose that $\mathbb{F}$ is a field extension of $\mathbb{B}$ of degree t. Let c be a codeword in a Reed-Solomon code of dimension k and our task is to compute the weighted sum of ℓ coded symbols. In this paper, for some s < t, we provide an explicit scheme that performs this task by downloading d(t − s) sub-symbols in $\mathbb{B}$ from d available nodes, whenever $d \geq \ell |\mathbb{B}{|^s} - \ell + k$. In many cases, our scheme outperforms previous schemes in the literature. Furthermore, we provide a characterization of evaluation schemes for general linear codes. Then in the special case of Reed-Solomon codes, we use this characterization to derive a lower bound for the evaluation bandwidth.
Han Mao Kiah, Wilton Kim, Stanislav Kruglik, San Ling, Huaxiong Wang
ISIT2
2023 Repair of Reed-Solomon Codes in the Presence of Erroneous Nodes
abstract
We consider the repair scheme of Guruswami-Wootters for the Reed-Solomon code and ask: can we correctly repair a failed node in the presence of erroneous nodes? Equivalently, we consider the collection of downloaded traces as a code and investigate its code-distance properties. We propose three lower bounds on its minimum distance and study methods to efficiently correct errors close to these bounds.
Stanislav Kruglik, Gaojun Luo, Wilton Kim, Shubhransh Singhvi, Han Mao Kiah, San Ling, Huaxiong Wang
ISIT3
2023 Coded Computation of Multiple Functions
abstract
We consider the problem of evaluating arbitrary multivariate polynomials over several massive datasets in a distributed computing system with a single master node and multiple worker nodes. We focus on the general case when each multivariate polynomial is evaluated over its dataset and propose a generalization of the Lagrange Coded Computing framework (Yu et al. 2019) to provide robustness against stragglers who do not respond in time, adversarial workers who respond with wrong computation and information-theoretic security of dataset against colluding workers. Our scheme introduces a small computation overhead which results in a reduction in download cost and also offers comparable resistance to stragglers over existing solutions.
Wilton Kim, Stanislav Kruglik, Han Mao Kiah
ITW1