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传统冯·诺依曼计算机在并行性计算和自适应学习方面效率较低, 无法满足当前飞速发展的信息技术对高效、高速计算的迫切需求. 受脑启发的神经形态计算具有高度并行性、超低功耗等优势, 被认为是打破传统计算机局限性, 实现新一代人工智能的理想途径. 神经形态器件是实施神经形态计算的硬件载体, 是构建神经形态芯片的关键. 与此同时, 人类视觉系统与光遗传学的发展为神经形态器件的研究提供了新的思路. 新兴的光电神经形态器件结合了光子学与电子学各自的优势, 在神经形态计算领域展露出巨大潜力, 受到了国内外研究人员广泛关注. 本文对的最新研究进行了总结. 首先综述了人工光电突触与人工光电神经元, 内容包括器件结构、工作机制以及神经形态功能模拟等方面. 然后, 对光电神经形态器件在人工视觉系统、人工感知系统、神经形态计算等领域中的潜在应用作了阐述. 最后, 总结了当前光电神经形态器件所面临的挑战, 并对其未来的发展方向进行了展望.Conventional computers based on the von Neumann architecture are inefficient in parallel computing and self-adaptive learning, and therefore cannot meet the rapid development of information technology that needs efficient and high-speed computing. Owing to the unique advantages such as high parallelism and ultralow power consumption, bioinspired neuromorphic computing can have the capability of breaking through the bottlenecks of conventional computers and is now considered as an ideal option to realize the next-generation artificial intelligence. As the hardware carriers that allow the implementing of neuromorphic computing, neuromorphic devices are very critical in building neuromorphic chips. Meanwhile, the development of human visual systems and optogenetics also provides a new insight into how to study neuromorphic devices. The emerging optoelectronic neuromorphic devices feature the unique advantages of photonics and electronics, showing great potential in the neuromorphic computing field and attracting more and more attention of the scientists. In view of these, the main purpose of this review is to disclose the recent research advances in optoelectronic neuromorphic devices and the prospects of their practical applications. We first review the artificial optoelectronic synapses and neurons, including device structural features, working mechanisms, and neuromorphic simulation functions. Then, we introduce the applications of optoelectronic neuromorphic devices particularly suitable for the fields including artificial vision systems, artificial perception systems, and neuromorphic computing. Finally, we summarize the challenges to the optoelectronic neuromorphic devices, which we are facing now, and present some perspectives about their development directions in the future.
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Keywords:
- optoelectronic neuromorphic devices/
- optoelectronic synapse/
- optoelectronic neuron/
- neuromorphic computing
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[1] [2] [3] [4] [5] [6] [7] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17] [18] [19] [20] [21] [22] [23] [24] [25] [26] [27] [28] [29] [30] [31] [32] [33] [34] [35] [36] [37] [38] [39] [40] [41] [42] [43] [44] [45] [46] [47] [48] [49] [50] [51] [52] [53] [54] [55] [56] [57] [58] [59] [60] [61] [62] [63] [64] [65] [66] [67] [68] [69] [70] [71] [72] [73] [74] [75] [76] [77] [78] [79] [80] [81] [82] [83] [84] [85] [86] [87] [88] [89] [90] [91] [92] [93] [94] [95] [96] [97] [98] [99] [100] [101] [102] [103] [104] [105] [106]
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