• Acta Optica Sinica
  • Vol. 41, Issue 16, 1622002 (2021)
Shanchi Ming1,2, Gaofei Sun1,2,*, Guoyu Zhang1,2, Shi Liu1,2..., Da Xu1,2, Songzhou Yang1,2, Shi Su1,2, Jian Zhang1,2 and Ran Zhang3|Show fewer author(s)
Author Affiliations
  • 1School of Opto-electronic Engineering, Changchun University of Science and Technology, Changchun, Jilin 130022, China
  • 2Optical Measurement and Control Instrumentation, Jilin Province Engineering Research Center, Changchun, Jilin 130022, China
  • 3Changchun Institute of Technology, Changchun, Jilin 130022, China
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    DOI: 10.3788/AOS202141.1622002 Cite this Article Set citation alerts
    Shanchi Ming, Gaofei Sun, Guoyu Zhang, Shi Liu, Da Xu, Songzhou Yang, Shi Su, Jian Zhang, Ran Zhang. Continuous Regulation System Design of Wide-Range Irradiance for Solar Simulators[J]. Acta Optica Sinica, 2021, 41(16): 1622002 Copy Citation Text show less
    References

    [1] Gallo A, Marzo A, Fuentealba E et al. High flux solar simulators for concentrated solar thermal research: a review[J]. Renewable and Sustainable Energy Reviews, 77, 1385-1402(2017).

    [2] Chen Y Y, Fang X D, Guo L et al. Design of a solar radiation simulator for the aircraft cabin thermal load tests[J]. Acta Optica Sinica, 40, 0922001(2020).

    [3] Sun H J, Zhang G Y, Sun G F et al. Design of variable coefficient ellipsoidal condenser[J]. Laser & Optoelectronics Progress, 58, 0908001(2021).

    [4] Wang W J, Aichmayer L, Garrido J et al. Development of a Fresnel lens based high-flux solar simulator[J]. Solar Energy, 144, 436-444(2017).

    [5] Garrido J, Aichmayer L, Wang W J et al. Characterization of the KTH high-flux solar simulator combining three measurement methods[J]. Energy, 141, 2091-2099(2017).

    [6] Levêque G, Bader R, Lipiński W et al. Experimental and numerical characterization of a new 45 kWel multisource high-flux solar simulator[J]. Optics Express, 24, A1360-A1373(2016).

    [7] Domínguez C, Antón I, Gabriel S et al. Solar simulator for concentrator photovoltaic systems[J]. Optics Express, 16, 14894-14901(2008).

    [8] Zhang R, Li H S, Xiang Y H et al. 2. 6(6):, 499, 548-553(2009).

    [9] Liu S. Study on key technique of collimation solar simulator with high-precision[D]. Changchun: Changchun University of Science and Technology(2014).

    [10] Lü W H, Mo Y Q, Wang D. Characteristics investigation for pyranometers[J]. Acta Energiae Solaris Sinica, 23, 313-316(2002).

    [11] Najafabadi H A, Ozalp N. Aperture size adjustment using model based adaptive control strategy to regulate temperature in a solar receiver[J]. Solar Energy, 159, 20-36(2018).

    [12] Su S, Meng F L, Zhang G Y et al. Design method of irradiance attenuator for solar simulator of xenon lamp[J]. Acta Optica Sinica, 41, 0208001(2021).

    [13] Wu D J. The research on the technique of irradiance control for solar simulator[D]. Changsha: National University of Defense Technology(2006).

    [14] Gordon J M, Babai D, Feuermann D. A high-irradiance solar furnace for photovoltaic characterization and nanomaterial synthesis[J]. Solar Energy Materials and Solar Cells, 95, 951-956(2011).

    [15] Li Z G, Tang D W, Li T et al. A hemispherical-involute cavity receiver for stirling engine powered by a xenon arc solar simulator[J]. Chinese Physics Letters, 28, 054401(2011).

    [16] Zhu K S, Sun J G, Li G H. Study of the effects of spectral mismatch of LED sun simulator on the testing of solar cells[J]. China Light & Lighting, 10-14(2015).

    [17] Jin J, Hao Y, Jin H G. A universal solar simulator for focused and quasi-collimated beams[J]. Applied Energy, 235, 1266-1276(2019).

    [18] Zhong J G. Methods to calculate the distribution of irradiance by an aspherical collecting mirror[J]. Acta Energiae Solaris Sinica, 6, 41-47(1985).

    [19] Okuhara Y, Kuroyama T, Tsutsui T et al. A solar simulator for the measurement of heat collection efficiency of parabolic trough receivers[J]. Energy Procedia, 69, 1911-1920(2015).

    [20] Lü T, Fu D H, Chen X Y et al. Effect of optical intergrator element lenses’ number and shape on the lighting uniformity of solar simulator[J]. Journal of Optoelectronics·Laser, 25, 1849-1853(2014).

    [21] Zheng R, Zhang G Y, Gao Y et al. Cosine error correction of solar radiation observation instrument[J]. Acta Photonica Sinica, 45, 112004(2016).

    [22] Cheng Y, Fang F Z, Zhang X D. Design and manufacture of off-axis optical reflective integrator with faceted structure[J]. Optical Engineering, 51, 094001(2012).

    [23] Wang G C, Lin X, Gu C et al. New type of uniform light device for solar simulator[J]. Acta Optica Sinica, 40, 2436001(2020).

    [24] Qin Z, Wang K, Chen F et al. Analysis of condition for uniform lighting generated by array of light emitting diodes with large view angle[J]. Optics Express, 18, 17460-17476(2010).

    [25] Zheng Z R, Hao X, Liu X. Freeform surface lens for LED uniform illumination[J]. Applied Optics, 48, 6627-6634(2009).

    [26] Tavakoli M, Jahantigh F, Zarookian H. Adjustable high-power-LED solar simulator with extended spectrum in UV region[J]. Solar Energy, 220, 1130-1136(2021).

    [27] Wu D H, Wang J W, Su Z P. Optimization and integration of LED array for uniform illumination distribution[J]. Optoelectronics Letters, 10, 335-339(2014).

    [28] Ma Y L, Jing F L. Some primary ideas of vacuum thermal test for “Chang E-1” lunar exploration satellite[J]. Spacecraft Environment Engineering, 21, 1-7(2004).

    [29] Costa B A, Lemos J M, Guillot E. Control of a solar furnace using MPC with integral action[J]. IFAC-PapersOnLine, 49, 961-966(2016).

    [30] Liu S, Zhang G Y, Sun G F et al. Design of an optical system for a solar simulator with high collimation degree and high irradiance[J]. Journal of Optical Technology, 84, 117-121(2017).

    Shanchi Ming, Gaofei Sun, Guoyu Zhang, Shi Liu, Da Xu, Songzhou Yang, Shi Su, Jian Zhang, Ran Zhang. Continuous Regulation System Design of Wide-Range Irradiance for Solar Simulators[J]. Acta Optica Sinica, 2021, 41(16): 1622002
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