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Fuzzy power management for environmental monitoring systems in tropical regions

机译:热带地区环境监测系统的模糊电源管理

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Remote environmental monitoring systems require effective energy management to allow reliable long-term operation without frequent maintenance to replace or recharge batteries. To design and analyze relevant energy management strategies, we have developed Simulink-based models of a recently constructed monitoring device to evaluate its potential performance. The model uses long-term solar energy data from two locations, Chamela, Mexico, and Fairview, Canada, to estimate the energy harvesting capabilities of the device. Using the simulator, we have developed and evaluated a fuzzy energy management strategy that determines how the device should operate to match the solar energy profile in each location. Solar energy in Chamela, Mexico is abundant and consistent so an energy harvesting remote monitoring device could have a high activity level without risking device failure. Fairview, Canada, has limited solar resources in the winter but plenty in the summer; a device dependent upon this energy source must adapt its activity level to match energy availability or risk running out of energy. While the simulated device in Mexico outperforms the one in Canada, both succeed in matching the available environmental resources and largely avoid energy related device failure. In the future, their performance can be improved by optimizing the designed strategies and further improving the details of the simulation.
机译:远程环境监控系统需要有效的能源管理,以确保可靠的长期运行,而无需频繁维护以更换或充电电池。为了设计和分析相关的能源管理策略,我们开发了基于Simulink的新型监控设备模型,以评估其潜在性能。该模型使用来自墨西哥Chamela和加拿大Fairview这两个位置的长期太阳能数据来估计设备的能量收集能力。使用模拟器,我们开发并评估了模糊能量管理策略,该策略确定设备应如何操作以匹配每个位置的太阳能分布。墨西哥Chamela的太阳能资源丰富且稳定,因此能量收集远程监控设备可以具有较高的活动水平,而不会冒设备故障的风险。加拿大费尔维尤(Fairview)的冬季太阳能资源有限,但夏季则充足。依赖于此能源的设备必须调整其活动级别以匹配能源可用性或存在能源耗尽的风险。尽管墨西哥的模拟设备优于加拿大的模拟设备,但两者都成功地匹配了可用的环境资源,并在很大程度上避免了与能源相关的设备故障。将来,可以通过优化设计策略并进一步改善仿真细节来提高其性能。

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