可以。下面这些是你那段话中可用的、能访问的文献链接。我建议不要全部引用,主文里选 4–6 篇即可: swing body ocean buoy、rolling mass oceanic drifter、ultra low frequency ocean monitoring、1.5 Hz drifter motion、15.22° buoy angular motion 这几类各保留 1 篇最有代表性的。 推荐引用文献和链接 用途 推荐文献 可访问链接 这篇能 Related studies have demonstrated swing body electromagnetic harvesters for self pow...
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Create a landscape editorial hero image for this Studio Global article: The tested angular response range represents finite low frequency angular motion, which is relevant to floating sensor platforms, ocean buoy. Article summary: 可以。下面这些是你那段话中可用的、能访问的文献链接。我建议不要全部引用,主文里选 4–6 篇即可: swing body ocean buoy、rolling mass oceanic drifter、ultra low frequency ocean monitoring、1.5 Hz drifter motion、15.22° buoy angular motion 这几类各保留 1 篇最有代表性的。 推荐引用文献和链接 | 用途 . Topic tags: deepresearch, general web, workflow, productivity, code. Style: premium digital editorial illustration, source-backed research mood, clean composition, high detail, modern web publication hero. Use reference image context only for broad subject, composition, and topical grounding; do not copy the exact image. Avoid: logos, brand marks, copyrighted characters, real person likenesses, fake screenshots, UI text, readable text, waterma
可以。下面这些是你那段话中可用的、能访问的文献链接。我建议不要全部引用,主文里选 4–6 篇即可:swing-body ocean buoy、rolling-mass oceanic drifter、ultra-low-frequency ocean monitoring、1.5 Hz drifter motion、15.22° buoy angular motion 这几类各保留 1 篇最有代表性的。
| 用途 | 推荐文献 | 可访问链接 | 这篇能支持什么 |
|---|---|---|---|
| Swing-body harvester for self-powered ocean buoy | Li et al., “Study of an Electromagnetic Ocean Wave Energy Harvester Driven by an Efficient Swing Body Toward the Self-Powered Ocean Buoy Application,” IEEE Access, 2019 | PDF link | 支持“swing-body electromagnetic harvester 用于 self-powered ocean buoy”这一说法;检索结果显示该文 DOI 为 10.1109/ACCESS.2019.2937587 |
| Rolling-mass harvester for oceanic drifter | “Electromagnetic rolling mass wave energy harvester for oceanic drifter applications,” EPJ Special Topics, 2022 | DOI / article link | 支持“rolling-mass wave energy harvester 用于 oceanic drifter applications”;摘要指出 ocean monitoring sensor platforms such as Lagrangian drifters 的自主供能需求推动了该类采能器设计 |
| Drifter motion around 1.5 Hz | “Experimental Validation of a Kinetic Energy Harvester Device for Oceanic Drifter Applications” | PDF link | 支持“drifter motion 可包含约 1.5 Hz 的 natural pendulum frequency”;检索摘要中明确写到 embedded IMU 测得 natural pendulum frequency of 1.5 Hz |
| Drifter acceleration spectrum around 1.5 Hz | “Design and Testing of a Kinetic Energy Harvester Embedded Into an Oceanic Drifter” | PDF link | 支持 oceanic drifter 在海试中存在低频运动;摘要提到 peak-to-peak accelerations of 0.8g,且 power spectra centered around 1.5 Hz and 1 Hz |
| Buoy RMS angular displacement around 15.22° | Jung et al., Nano Energy paper, 2025 | PDF link | 支持“buoy motion 可达到有限角位移”;检索摘要明确给出 RMS angular displacement = 15.22° and RMS angular velocity = 48.25°/s |
| Ultra-low-frequency wave energy for ocean monitoring | “Ocean wave energy harvesting with high energy density and self-powered monitoring system,” Nature Communications, 2024 | Article link | 支持 ultra-low-frequency wave environment 与 ocean monitoring/self-powered system 的应用背景;摘要指出系统用于 1–2 Hz ultra-low-frequency wave environment 下的 ocean parameter monitoring |
| Smart ocean ranch / low-power equipment | “A self-powered and self-monitoring ultra-low frequency wave energy harvester for smart ocean ranches,” iScience, 2024 | PubMed link / Full text link | 支持“smart ocean ranch 环境中 ultra-low-frequency wave energy 可用于 low-power equipment”;摘要中明确写到 ocean ranch environment contains ultra-low-frequency wave energy for powering low-power equipment |
| Marine buoy wave-energy review | Xu et al., “Recent Progress on Wave Energy Marine Buoys,” Journal of Marine Science and Engineering, 2022 | PDF link | 可作为综述引用,支持 marine buoys 中 heave/pitch/body motion 等波浪诱导运动可用于能量采集 |
你原句可以改成下面这样,避免说得过满:
The tested angular-response range represents finite low-frequency angular motion, which is relevant to rocking or wave-induced platforms such as floating sensor platforms, ocean buoys, hinged supports, and compliant-mounted systems. Related studies have demonstrated swing-body electromagnetic harvesters for self-powered ocean-buoy applications
5, rolling-mass harvesters for oceanic drifters
4, and ultra-low-frequency wave-energy harvesters for ocean monitoring or smart ocean systems
3
11. Reported platform-related motions include drifter motion with a natural pendulum frequency of about 1.5 Hz
7 and buoy motion with an RMS angular displacement of approximately 15.22°
10. Therefore, the present tests are intended to validate the nonlinear response under representative finite-angular-motion conditions. For applications with more restricted angular motion, the activation threshold of the high-output branch may be reduced by retuning the spring engagement threshold, geometric ratios, and inertia distribution.
如果你想精简引用,建议只保留这 5 篇:
这样就能覆盖你这段话里的全部关键论据。
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可以。下面这些是你那段话中可用的、能访问的文献链接。我建议不要全部引用,主文里选 4–6 篇即可: swing body ocean buoy、rolling mass oceanic drifter、ultra low frequency ocean monitoring、1.5 Hz drifter motion、15.22° buoy angular motion 这几类各保留 1 篇最有代表性的。 推荐引用文献和链接 | 用途 | 推荐文献 | 可访问链接 | 这篇能
可以。下面这些是你那段话中可用的、能访问的文献链接。我建议不要全部引用,主文里选 4–6 篇即可: swing body ocean buoy、rolling mass oceanic drifter、ultra low frequency ocean monitoring、1.5 Hz drifter motion、15.22° buoy angular motion 这几类各保留 1 篇最有代表性的。 推荐引用文献和链接 | 用途 | 推荐文献 | 可访问链接 | 这篇能 Related studies have demonstrated swing body electromagnetic harvesters for self powered ocean buoy applications [5], rolling mass harvesters for oceanic drifters [4], and ultra low frequency wave energy harvesters for ocean monitoring or s
Reported platform related motions include drifter motion with a natural pendulum frequency of about 1.5 Hz [7] and buoy motion with an RMS angular displacement of approximately 15.22° [10].