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市场调查报告书
商品编码
1383265
全球卫星电力电子市场(2023-2033)Global Satellite Power Electronics Market 2023-2033 |
卫星电力电子设备是管理卫星上电力的产生、分配和调节的电子元件和系统。 这些电力电子设备对于卫星电力系统的高效可靠运作至关重要。
卫星电力电子设备控制太阳能板和太阳能电池阵列产生的电力,将阳光转换为电能。 太阳能电池阵列调节器、MPPT(最大功率点追踪器)和电压转换器是电力电子元件,可优化和调节卫星电气系统中使用的太阳能电池板的输出。
电压调节、电流限制和滤波等电力电子元件可调节太阳能电池阵列产生的功率。 这确保了卫星电气系统的供电稳定且在指定的运作参数范围内。
卫星电力电子设备负责充电、放电和监控用于储存太阳能电池阵列产生的多余电力的储能係统(通常是电池)。 电池充电控制器和电压转换器等电力电子元件可优化充电和放电过程,确保有效利用储存的能量。 电力电子系统负责向卫星的各个子系统和组件分配电力。 配电单元 (PDU) 调节电源并将其分配给各种负载,电源管理和控制电路监控并平衡整个卫星的功耗。
DC-DC转换器和逆变器是在不同子系统或组件之间转换电压位准的电力电子元件。 这是透过适应不同卫星系统的特定电压要求来确保相容性和高效电力传输所必需的。 电力电子元件在工作过程中会产生热。 热管理系统(例如散热器和温度感测器)整合到卫星电力电子设备中,以保持最佳工作温度并防止过热,从而降低性能和可靠性。
卫星电力电子设备旨在提高电力转换过程的效率。 采用软开关和谐振转换器等先进功率转换技术来最大限度地减少功率损耗并最大限度地提高整个卫星电源系统的能源效率。
本报告分析了全球卫星电力电子市场,并探讨了整体市场规模的前景、按地区和国家划分的详细趋势、关键技术概述和市场机会。Masu。
Satellite power electronics are the electronic components and systems that manage the generation, distribution, and regulation of power onboard a satellite. These power electronics are critical to the efficient and dependable operation of satellite power systems.
Satellite power electronics control the power generated by solar panels or arrays, which convert sunlight into electrical energy. Solar array regulators, maximum power point trackers (MPPTs), and voltage converters are power electronics components that optimize and regulate the power output from solar panels for use by the satellite's electrical systems.
Power electronics components, such as voltage regulation, current limiting, and filtering, condition the raw power generated by solar arrays.This ensures that the power supplied to the satellite's electrical systems is stable and within the operating parameters specified.
Satellite power electronics are in charge of charging, discharging, and monitoring energy storage systems, typically batteries, that are used to store excess power generated by solar arrays. Power electronics components like battery charge controllers and voltage converters optimize the charging and discharging processes, ensuring that stored energy is used efficiently. Power electronics systems are in charge of distributing power to the satellite's various subsystems and components. Power distribution units (PDUs) regulate and distribute power to various loads, and power management and control circuits monitor and balance power consumption throughout the satellite.
DC-DC converters and inverters are power electronics components that convert voltage levels between different subsystems or components. This is required to ensure compatibility and efficient power transfer by matching the specific voltage requirements of different satellite systems. During operation, power electronics components generate heat. Thermal management systems, such as heat sinks and temperature sensors, are integrated into satellite power electronics to maintain optimal operating temperatures and prevent overheating, which can degrade performance and reliability.
Satellite power electronics are designed for high efficiency in power conversion processes. To minimize power losses and maximize the overall energy efficiency of the satellite power system, advanced power conversion techniques such as soft switching and resonant converters are used.