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When in Standby Mode

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작성자 Zachary 댓글 0건 조회 4회 작성일 25-09-24 08:54

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713ced8d-d787-4d97-a3cf-6d8936f3c13a.jpegThe BLIP sends highly correct monitoring data securely and with minimal delay to the Operator monitoring module over the LTE 4G cell network. Once a flight has began, the BLIP feeds the information as soon as per second to the Unifly cloud providers and broadcasts the identical information at the identical price over Bluetooth Low Energy (BLE), in compliance with EU regulations. The information set collected and transmitted by the BLIP contains the identification of the drone, of the BLIP and the drone operator/pilot and a set of flight parameters together with the current position and altitude of the drone. The BLIP device operates in a highly autonomous style. It has a constructed-in power source and is geared up with sensors for place, altitude, temperature, pressure, velocity, and direction. Simply attach a BLIP to a drone and it is ready for use. When in standby mode, the machine is activated routinely as quickly as motion is detected.



The invention pertains to a big-angle intelligent photo voltaic tracker, which features a transferring platform and a set platform, and a first branch chain I, iTagPro locator a second department chain II, a third branch chain III, and a fourth branch chain are installed between the moving platform and the mounted platform. IV, the primary department I and the third department III have the identical structure and are symmetrically arranged, and the second department II and the fourth branch IV have the identical structure and are symmetrically organized; the primary branch I consists of the first connecting rod, and the primary connecting rod The upper end of the rod is related with the shifting platform via the ball pair, the lower end of the first connecting rod is connected with the primary Hooke hinge, and the primary Hooke hinge is related with the fixed platform by the first connecting block by way of the primary moving pair; the second department chain II Including the second connecting rod, the upper finish of the second connecting rod is connected with the moving platform by the second Hooke hinge, the decrease finish of the second connecting rod is related with the second connecting block by means of the rotating pair, and iTagPro bluetooth tracker the second connecting block and the fastened platform are moved by means of the second Secondary connection.



The 4 branch chains of the current invention form a space parallel closed-loop structure with the transferring platform and ItagPro the fixed platform, which may realize two-dimensional translation and two-dimensional rotational motion in house. 本发明属于并联机器人领域,特别涉及一种应用于定位、气象、雷达等环境下能够实现精确跟踪的四自由度单平台大转角智能太阳追踪器。 The invention belongs to the sphere of parallel robots, and iTagPro locator specifically relates to a four-diploma-of-freedom single-platform massive-rotation-angle intelligent sun tracker that can understand precise tracking in environments similar to positioning, meteorology, and iTagPro website radar. 并联机构通常由动平台、静平台及两平台之间的若干支链组成,具有刚度大、速度快、精度高的优点,在工业机器人、运动模拟器、并联机床等领域得到广泛应用。



近些年,国外已将陆续将部分机构构型应用于工业生产中(如:delta机构),而国内则较少,而且很少应用在生产生活中。 The parallel mechanism is usually composed of a dynamic platform, a static platform and several branch chains between the 2 platforms. It has the advantages of excessive rigidity, quick speed and high precision. It is broadly used in industrial robots, motion simulators, parallel machine tools and different fields. In recent times, foreign international locations have successively utilized some mechanism configurations to industrial manufacturing (equivalent to: iTagPro features delta mechanism), while there are fewer home ones, and they are hardly ever utilized in production and life. 在运动模拟器、姿态调平、太阳能追踪以及并联机床等领域,通常需要实现大位移、大转角,实现较大工作空间范围内的运动。



In the fields of movement simulators, angle leveling, photo voltaic monitoring, and parallel machine tools, it is often mandatory to realize large displacements, ItagPro giant rotation angles, and motions inside a large working space. 国内太阳能发电普遍采用固定式太阳能电池安装方式,尽管这种安装方式结构简单、成本较低,但是无法精确跟踪太阳位置,光能转换效率较低。 现有研究中,也存在部分运动型太阳能机构,单轴或双轴等多为串联机构精度不高。 其中双轴的跟踪精度相对较高,太阳板能达到的转换效率相对较大,但遇到恶劣天气难以保证装置的安全性。

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