[2] GOULD C, EDWARDS R. Review on microenergy harvesting technologies[C]2016 51st international universities power engineering conference (UPEC). Coimbra: IEEE, 2016.
[3] LI J H, ZHANG X R, ZHOU C, et al. New applications of an automated system for high-power LEDs[J]. IEEE/ASME Transactions on Mechatronics, 21, 1035-1042(2016).
[5] AL-SHEHRI S A. Cooling computer chips with cascaded and non-cascaded thermoelectric devices[J]. Arabian Journal for Science and Engineering, 44, 9105-9126(2019).
[7] XIE K, GUPTA M C. High-temperature thermoelectric energy conversion devices using Si-Ge thick films prepared by laser sintering of Nano/micro particles[J]. IEEE Transactions on Electron Devices, 67, 2113-2119(2020).
[17] FATAHIAN E, KORDANI N, FATAHIAN H. Smart portable cryotherapy system involving controlled thermoelectric cooling modules for medical applications[J]. IIUM Engineering Journal, 19, 117-128(2018).
[18] HATO T, TSUKAMOTO A, TANABE K. "Portable cryostat with temperature control function for operation of HTS-SQUID at a higher slew rate[J]. IEEE Transactions on Applied Superconductivity, 29, 1600304(2019).
[20] WANG N, GAO C, DING C, et al. A thermal management system to reuse thermal waste released by high-power light-emitting diodes[J]. IEEE Transactions on Electron Devices, 66, 4790-4797(2019).