New mechanisms improve differential privacy for scalar queries.
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We formulate a private learning model to study an intrinsic tradeoff between privacy and query complexity in sequential learning. Our model involves a learner who aims to determine a scalar value, , by sequentially querying an external database and receiving binary responses. In the meantime, an adversary observes…
We study the query complexity of a learner-private sequential learning problem, motivated by the privacy and security concerns due to eavesdropping that arise in practical applications such as pricing and Federated Learning. A learner tries to estimate an unknown scalar value, by sequentially querying an external datab…
Differential privacy mechanism design has traditionally been tailored for a scalar-valued query function. Although many mechanisms such as the Laplace and Gaussian mechanisms can be extended to a matrix-valued query function by adding i.i.d. noise to each element of the matrix, this method is often suboptimal as it for…
Solves TOD systems' query annotation problem without explicit annotations.
Study exact community recovery in noisy SBM with limited queries.
Efficiently classifies binary labels with XOR queries, even under noisy conditions.
Proposes a new query autocompletion method that maximizes retrieval performance.
Adapts large transformer model for search query intent understanding.
A new method for private query release using Johnson-Lindenstrauss projection.
LAZO reduces query complexity and variance in ZO methods.
We consider the problem of adaptively PAC-learning a probability distribution 's mode by querying an oracle for information about a sequence of i.i.d. samples generated from . We consider two different query models: (a) each query is an index for which the oracle reveals…
Estimates heavy hitters in data streams with queries, balancing accuracy and efficiency.
Query2box embeds complex queries as boxes to handle logical operations in large KGs.
Survey of statistical queries and their applications.
Source coding is the canonical problem of data compression in information theory. In a locally encodable source coding, each compressed bit depends on only few bits of the input. In this paper, we show that a recently popular model of semi-supervised clustering is equivalent to locally encodable source coding. In this …
A new query embedding method improves KB performance on complex queries.
In this paper we study the adaptive learnability of decision trees of depth at most from membership queries. This has many applications in automated scientific discovery such as drugs development and software update problem. Feldman solves the problem in a randomized polynomial time algorithm that asks $\tilde O(2^…
We study black-box attacks on machine learning classifiers where each query to the model incurs some cost or risk of detection to the adversary. We focus explicitly on minimizing the number of queries as a major objective. Specifically, we consider the problem of attacking machine learning classifiers subject to a budg…
Fairly allocate items with noisy queries, reducing envy.
This paper models the crowdsourced labeling/classification problem as a sparsely encoded source coding problem, where each query answer, regarded as a code bit, is the XOR of a small number of labels, as source information bits. In this paper we leverage the connections between this problem and well-studied codes with …
In query learning, the goal is to identify an unknown object while minimizing the number of "yes" or "no" questions (queries) posed about that object. A well-studied algorithm for query learning is known as generalized binary search (GBS). We show that GBS is a greedy algorithm to optimize the expected number of querie…
Thermal preferences vary from person to person and may change over time. The main objective of this paper is to sequentially pose intelligent queries to occupants in order to optimally learn the indoor air temperature values which maximize their satisfaction. Our central hypothesis is that an occupant's preference rela…
We introduce new combinatorial quantities for concept classes, and prove lower and upper bounds for learning complexity in several models of query learning in terms of various combinatorial quantities. Our approach is flexible and powerful enough to enough to give new and very short proofs of the efficient learnability…
The paper tackles learning smooth distance functions using query-based methods.
Efficiently tests two distributions with few label queries.
We study the query complexity of Bayesian Private Learning: a learner wishes to locate a random target within an interval by submitting queries, in the presence of an adversary who observes all of her queries but not the responses. How many queries are necessary and sufficient in order for the learner to accurately est…
This work sets lower bounds on the number of score queries needed for diffusion sampling.
Most content-based image retrieval systems consider either one single query, or multiple queries that include the same object or represent the same semantic information. In this paper we consider the content-based image retrieval problem for multiple query images corresponding to different image semantics. We propose a…
Improves model classification accuracy in black-box settings.
Improved algorithm for selecting a hypothesis locally privately with fewer queries.
Discrete integration in a high dimensional space of n variables poses fundamental challenges. The WISH algorithm reduces the intractable discrete integration problem into n optimization queries subject to randomized constraints, obtaining a constant approximation guarantee. The optimization queries are expensive, which…
In query learning, the goal is to identify an unknown object while minimizing the number of "yes or no" questions (queries) posed about that object. We consider three extensions of this fundamental problem that are motivated by practical considerations in real-world, time-critical identification tasks such as emergency…
New method speeds up causal sensitivity analysis.
Study learns linear utility functions from comparisons, showing learnability gaps between passive and active learning.
We investigate the problem of active learning on a given tree whose nodes are assigned binary labels in an adversarial way. Inspired by recent results by Guillory and Bilmes, we characterize (up to constant factors) the optimal placement of queries so to minimize the mistakes made on the non-queried nodes. Our query se…
New attacks reduce bad queries in black-box classifiers, improving effectiveness.
The paper tests properties of trees in graphical models using covariance queries.
LEAQI learns to query an expert less often for noisy guidance.
New memory-query tradeoffs for convex optimization algorithms.
NP-Attack reduces query counts for black-box adversarial attacks.
New algorithms learn MNL weights efficiently for any slate size.
Game theory helps machine learn better from adversarial queries.
We consider the problem of learning a general graph using edge-detecting queries, where the number of vertices is given to the learner. The information theoretic lower bound gives for the number of queries, where is the number of edges. In case the number of edges is also given t…
Study on how many queries an adversary needs to make to match the best attack in white-box model.
A keyword spotting (KWS) system determines the existence of, usually predefined, keyword in a continuous speech stream. This paper presents a query-by-example on-device KWS system which is user-specific. The proposed system consists of two main steps: query enrollment and testing. In query enrollment step, phonetic pos…
In this paper we address cardinality estimation problem which is an important subproblem in query optimization. Query optimization is a part of every relational DBMS responsible for finding the best way of the execution for the given query. These ways are called plans. The execution time of different plans may differ b…
New algorithm for clustering with faulty oracle achieves optimal queries and efficiency.