الملخص
Test-time scaling with parallel branches is widely adopted to improve performance on challenging reasoning tasks. The predominant approach, repeated sampling, draws branches independently from a single policy, which can produce redundant attempts and thereby limit the gains from additional inference compute. To address this limitation, we propose Planned Test-Time Scaling (PTTS), which replaces independent sampling with a coordinated joint policy: a planner generates a solution outline for each branch, steering the branches toward distinct reasoning paths, and an executor produces a full solution conditioned on each outline. Formally, we show that PTTS strictly generalizes repeated sampling and, in a stylized setting, provably promotes coverage of complementary reasoning modes and yields better pass@k scaling. We instantiate PTTS on top of strong reasoning models, keeping them fixed as executors while replacing repeated sampling with PTTS inference to further enhance test-time scaling. Concretely, we develop two variants: PTTS-ZS prompts a model to jointly generate outlines for all branches in a single autoregressive pass, while PTTS-RL directly optimizes the planner against the pass@k reward using truncated execution rollouts for efficient training and a sharper reward signal. Across five mathematical reasoning benchmarks with Qwen3-1.7B and 4B, PTTS-ZS improves pass@64 over repeated sampling by up to 6.7 points, while PTTS-RL further increases the gain to up to 13.4 points. Further analysis indicates that broader coverage of distinct reasoning paths contributes to these gains. Overall, PTTS provides a general framework for improving test-time scaling by coordinating reasoning branches, with zero-shot and trainable instantiations that yield substantial performance gains.
الكلمات المفتاحية
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اقتبس هذه المقالة
APA 7
Wu, X., Bai, L., Bansal, H., Kung, P. N., Li, S., Liu, H., Peng, N., & Chang, K. W. (2026). Planned Test-Time Scaling with Coordinated Reasoning Paths. https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths
MLA 9
Wu, Xueqing, et al. "Planned Test-Time Scaling with Coordinated Reasoning Paths." https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths.
شيكاغو (المؤلف–التاريخ)
Wu, Xueqing, Langxing Bai, Hritik Bansal, Po-Nien Kung, Shuo Li, Hao Liu, Nanyun Peng, and Kai-Wei Chang. 2026. "Planned Test-Time Scaling with Coordinated Reasoning Paths." https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths.
هارفارد
Wu, X., Bai, L., Bansal, H., Kung, P. N., Li, S., Liu, H., Peng, N. and Chang, K. W. (2026) 'Planned Test-Time Scaling with Coordinated Reasoning Paths', Available at: https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths.
فانكوفر
Wu X, Bai L, Bansal H, Kung PN, Li S, Liu H, et al. Planned Test-Time Scaling with Coordinated Reasoning Paths. https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths
IEEE
X. Wu, L. Bai, H. Bansal, P. N. Kung, S. Li, H. Liu, N. Peng, and K. W. Chang, "Planned Test-Time Scaling with Coordinated Reasoning Paths," https://omanscience.com/ar/articles/planned-test-time-scaling-with-coordinated-reasoning-paths.